Este es un listado con enlaces gratuitos de publicaciones y/o informes de estudios Geofísicos realizados dentro del territorio Chileno. El listado busca facilitar la difusión y el acceso de los trabajos geofísicos realizados por instituciones nacionales, internaciones e industria durante las últimas décadas en Chile.
Esta es una lista en desarrollo y que debería ir mejorando con el tiempo. Es posible que algunos trabajados y/o estudios geofísicos relevantes aún no se hayan incluido.
Si tiene interés en agregar algún trabajo o estudio al listado, por favor enviar un correo a administrador@sege.cl.
Adicionalmente, la comunidad SEGE tiene una lista de correos para comunicación interna, difusión y discusión de temas técnicos. Para ser parte de la lista de correos seguir la instrucciones en LISTA DE CORREOS – Sociedad de Exploración Geofísica (SEGE)
- METODOS GEOFÍSICOS
- Gravimetría (Grav)
- Métodos de Corriente Continúa (DC) y Polarización Inducida (IP).
- Electromagnetismo Aéreo (Airbone EM)
- Tomografía de Resistividad Eléctrica (ERT)
- Sísmica de Reflexión
- Sísmica de Refracción
- Tomografía Sísmica
- Radar de Penetración Terrestre (GPR)
- Transiente Electromagnético (TEM)
- Transiente Electromagnético (TEM)
- Geofísica de Pozos (Well Logging)
- TEMAS
- Andes Centrales
- Exploración de Recursos Minerales
- Geotermia/Volcanes
- Sismologia
- Subducción - Margen Continental
Métodos Geofísicos: Corriente Continua (DC) y Polarización Inducida(IP)
[1] Bournas, Nasreddine and Thomson, David, [2013]
Delineation Porphyry Copper-gold System Using Dcip
[2] Hope, Matthew and Andersson, Steven, [2015]
Geophysical Response Atlantida Cu-au Porphyry Deposit, Chile Undercover Discovery District , ASEG,2015,1--7
[3] Joel Jansen, Jamin Cristall, [2021]
Mineral Exploration Using Natural Fields , Targeting ,Mine to Camp scale
[4] Rivera, Carlos Peña, [2023]
Comparison Resistivity Chargeability Inversions Integrating Rock Physical Properties Geological Models.
Porphyry Exploration Americas
Discovery Ujina Deposit, Collahuasi District, Chile , SEG,412--415
Geophysical Expressions Systems—our Current Understanding , Building Exploration Capability 21st Century
Métodos Geofísicos: Electromagnétismo Aéreo (Airbone EM)
Levantamiento Electromagnético Z-axis Tipper (ztem) Para Evaluaciones Geotérmicas Cinco Zonas Chile , Sernageomin ,Informe Registrado {IR
[2] Joel Jansen, Jamin Cristall, [2021]
Mineral Exploration Using Natural Fields , Targeting ,Mine to Camp scale
Ztem Airborne Afmag Ground Geophysical Survey Comparisons Over Pampa Lirima Geothermal Field Northern Chile
[4] Lemus, Martin and Honores, Carolina, [2021]
Sistemas Geotermales Zona Volcánica Central Andes Chile (38-41° Modelos Conceptuales Base Geología Geofísica Ztem , Sernageomin ,Informe Registrado {IR
[5] Lemus, Martin and Honores, Carolina, [2020]
Sistema Geotermal Pelehue , Sernageomin ,Informe Registrado {IR
Geophysical Expressions Systems—our Current Understanding , Building Exploration Capability 21st Century
Métodos Geofísicos: Tomografía de Resistividad Eléctrica (ERT)
[1] Aguirre, Igor and Maringue, José and Santibáñez, Isabel and Yáñez, Gonzalo, [2021]
Exploración Geofísica Acuíferos Profundos Ambientes Semiurbanos Rurales Cuencas Ante Arco Andino, Caso Estudio Acuífero Ñuble, Valle Central Chile , Andean Geology ,49
Soil Electrical Resistivity Monitoring Practical Tool Evaluating Irrigation Systems Efficiency Orchard Scale: Case Study Vineyard Central Chile , Irrigation Science ,39,123--143
Shallow Architecture Fuegian Andes Lineaments Based Electrical Resistivity Tomography (ert). Evidences Transverse Extensional Faulting Central Beagle Channel Area , Andean Geology ,45,1
Exploring Shallow Structure Ramón Thrust Fault Santiago, Chile (\textasciitilde33.5° Using Active Seismic Electric Methods , Solid Earth ,5,837--849
[5] Fuentes, Felipe and Machuca, Cristobal and Lopez, Luis and Donoso, Cecilia, [2023]
Caracterización Hidrogeológica Área Afectada Subsidencia Julio 2022 Mina Alcaparrosa , Sernageomin ,Informe Registrado {IR
Morphostructure Landslides: Characterization Through Electrical Resistivity Tomography (ert) , Recent Research Environmental Earth Sciences, Geomorphology, Soil Science, Paleoclimate, Karst ,155--158
Shallow Anatomy Ramón Fault (chile) Constrained Geophysical Methods: Implications Role Andean Deformation , Tectonics ,39,e2020TC006294
Métodos Geofísicos: Radar de Penetración Terrestre (GPR)
Soil Electrical Resistivity Monitoring Practical Tool Evaluating Irrigation Systems Efficiency Orchard Scale: Case Study Vineyard Central Chile , Irrigation Science ,39,123--143
[2] Barba, Luis and Muñoz, Iván and Ortiz, Agustín and Blancas, Jorge, [2015]
Técnicas Geofísicas Para Determinar Sistemas Constructivos Materiales Presentes Túmulos Período Formativo Valle Azapa , Chungará (arica) ,0--0
Characterization Hyperarid Study Site Yungay, Chile: Implications Applying Geophysical Methods Mars , Earth Space Science ,8,e2021EA001790
Geophysical Imaging Regolith Landscapes Along Climate Vegetation Gradient Chilean Coastal Cordillera , Catena ,180,146--159
[5] Fuentes, Felipe and Machuca, Cristobal and Lopez, Luis and Donoso, Cecilia, [2023]
Caracterización Hidrogeológica Área Afectada Subsidencia Julio 2022 Mina Alcaparrosa , Sernageomin ,Informe Registrado {IR
Comparison Regolith Physical Chemical Characteristics With Geophysical Data Along Climate Ecological Gradient, Chilean Coastal Cordillera , SOIL,6,629--647
Métodos Geofísicos: Gravimetría
[1] Aguirre, Igor and Maringue, José and Santibáñez, Isabel and Yáñez, Gonzalo, [2021]
Exploración Geofísica Acuíferos Profundos Ambientes Semiurbanos Rurales Cuencas Ante Arco Andino, Caso Estudio Acuífero Ñuble, Valle Central Chile , Andean Geology ,49
[2] Barrera, Cecilia Donoso and Díaz, Natalia Sepúlveda, [2022]
Modelación Anomalías Gravimétricas Localidades Pomaire , Sernageomin ,Informe Tecnico
[3] Caceres, David and Troncoso, Rosa and Aviles, Felipe, [2021]
Estudio Geofísico Cuenca Pudeto Región Lagos , Sernageomin ,Informe_Registrado_IR-21-93
[4] Donoso, Cecilia and Velasquez, Ricardo, [2022]
Caracterización Gravimétrica Área Concepción-talcahuano , Sernageomin ,Informe_Registrado_IR-22-100
Airborne Gravity Gradiometry Search Mineral Deposits
Seismic Hazard Slip Rate Crustal Faults, Estimating Characteristic Event Most Hazardous Zone: Study Case Ramón Fault, Southern Andes , Natural Hazards Earth System Sciences ,16,2511--2528
[7] Godoy, E and Yanez, G and Vera, E, [1996]
Late Miocene Volcanic Thickening Chilean Central Andes Seismic Gravity Constraints , Third Isag ,17-19/9/1996
[8] Hope, Matthew and Andersson, Steven, [2015]
Geophysical Response Atlantida Cu-au Porphyry Deposit, Chile Undercover Discovery District , ASEG,2015,1--7
Dynamic Characterization Mejillones Basin Northern Chile, Using Combined Geophysical Field Measurements , Engineering Geology ,233,238--254
[10] Morales, Daniel and Aguilef, Sebastián, [2023]
Gravimetría Área Unión-hueicolla , Sernageomin ,Informe_Registrado_IR-23-107
[11] Varios
Cartas Gravimería Chile , Sernageomin
Geophysical Expressions Systems—our Current Understanding , Building Exploration Capability 21st Century
Shallow Anatomy Ramón Fault (chile) Constrained Geophysical Methods: Implications Role Andean Deformation , Tectonics ,39
Métodos Geofísicos: Magnetometría
Rock-magnetic Oxide Microscopic Studies Laco Iron Deposits, Chilean Andes, Implications Magnetic Anomaly Modeling , International Geology Review ,45,533--547
Localized Field-aligned Currents 4-min Ground Magnetic Oscillations During 2015 Eruption Chile’s Calbuco Volcano , Earth, Planets Space ,68,148
[3] Austin, James and Geuna, Silvana and Clark, David and Hillan, Dean, [2014]
Remanence, Self-demagnetization Their Ramifications Magnetic Modelling Iron Oxide Copper-gold Deposits: Example From Candelaria, Chile , Journal Applied Geophysics ,109,242--255
[4] Austin, James and Hillan, Dean and Geuna, Silvana and Clark, David
Magnetic Modeling Candelaria Iocg Deposit, Chile:
[5] Barba, Luis and Muñoz, Iván and Ortiz, Agustín and Blancas, Jorge, [2015]
Técnicas Geofísicas Para Determinar Sistemas Constructivos Materiales Presentes Túmulos Período Formativo Valle Azapa , Chungará (arica) ,0--0
[6] Behn, Gerardo and Camus, Francisco and Carrasco, Pedro
Aeromagnetic Signature Porphyry Copper Systems Northern Chile Geologic Implications
Exploration Sedimentary Deposits Atacama Desert, Chile, Using Integrated Geophysical Techniques , Journal South American Earth Sciences ,115,103746
Magnetic Anomaly Data From Regional Survey: From Tierra Fuego Northern Palmer Land , Latinmag Letters Special Issue ,Volume 1
[9] Hernandez, María and Maksymowicz, Andrei and Bascuñán, Sebastián
Deep Crustal Magnetic Structure Central Andes Northern Chile: Prospect Tectonics Salar Atacama Region
[10] Hope, Matthew and Andersson, Steven, [2015]
Geophysical Response Atlantida Cu-au Porphyry Deposit, Chile Undercover Discovery District , ASEG,2015,1--7
Ztem Airborne Afmag Ground Geophysical Survey Comparisons Over Pampa Lirima Geothermal Field Northern Chile
[12] Matthews, Jr., J.P. and Jenkins, R.A.
Geophysical Exploration Discovery Candelaria Copper Gold Deposit Chile , Integrated Exploration Case Histories ,130
[13] Rudd, Jonathan and Eng, P
Porphyry Exploration Americas
[14] Varios
Cartas Magneticas Chile , Sernageomin
Geophysical Expressions Systems—our Current Understanding , Building Exploration Capability 21st Century
[16] Yañez, Gonzalo and Parra, Juan Carlos, [1988]
Provincias Magnetica Chile Central , Sernageomin
Métodos Geofísicos: Magnetotelúrica
Fluid Distribution Central Andes Subduction Zone Imaged With Magnetotellurics , Journal Geophysical Research: Solid Earth ,124,4017--4034
[2] Bournas, Nasreddine and Thomson, David, [2013]
Delineation Porphyry Copper-gold System Using Dcip
Bolivian Altiplano Conductivity Anomaly , Journal Geophysical Research: Solid Earth ,107
[4] Brasse, Heinrich and Soyer, Wolfgang, [2001]
Magnetotelluric Study Southern Chilean Andes , Geophysical Research Letters ,28,3757--3760
[5] Budach, Ingmar and Brasse, Heinrich and Díaz, Daniel, [2013]
Crustal-scale Electrical Conductivity Anomaly Beneath Inflating Lazufre Volcanic Complex, Central Andes , Journal South American Earth Sciences ,42,144--149
Fluid Melt Pathways Central Chilean Subduction Zone Near 2010 Maule Earthquake (35–36°s) Inferred From Magnetotelluric Data , Geochemistry, Geophysics, Geosystems ,20,1818--1835
[7] Cordell, Darcy and Unsworth, Martyn J. and Díaz, Daniel, [2018]
Imaging Laguna Maule Volcanic Field, Central Chile Using Magnetotellurics: Evidence Crustal Melt Regions Laterally-offset From Surface Vents Lava Flows , Earth Planetary Science Letters ,488,168--180
Magnetotelluric Study Western Cordillera (northern Chile), With Focus Lascar Volcano , Tesis,
Mariposa Geothermal System, Chile. , Transactions Geothermal Resources Council
[10] Hoffmann-Rothe, Arne, [2002]
Combined Structural Magnetotelluric Investigation Across West Fault Zone Northern Chile , Tesis,
[11] Joel Jansen, Jamin Cristall, [2021]
Mineral Exploration Using Natural Fields , Targeting ,Mine to Camp scale
[12] Kalberkamp, Ulrich
Exploration Geothermal High Enthalpy Resources Using Magnetotellurics Example From Chile
[13] Kühn, Christine and Küster, Jonas and Brasse, Heinrich, [2014]
Three-dimensional Inversion Magnetotelluric Data From Central Andean Continental Margin , Earth, Planets Space ,66,112
Ztem Airborne Afmag Ground Geophysical Survey Comparisons Over Pampa Lirima Geothermal Field Northern Chile
[15] Lemus, Martin and Honores, Carolina, [2020]
Sistema Geotermal Pelehue , Sernageomin ,Informe Registrado {IR
[16] Mancini, Renzo and Diaz, Daniel and Brasse, Heinrich and {B. Godoy, [2019]
Conductivity Distribution Beneath Pedro‐linzor Volcanic Chain North Chile .pdf , JGR
Dynamic Characterization Mejillones Basin Northern Chile, Using Combined Geophysical Field Measurements , Engineering Geology ,233,238--254
Exploration Results Resource Conceptual Model Tolhuaca Geothermal Field, Chile
[19] Melosh, Glenn and Moore, Joe and Stacey, Rob
Natural Reservoir Evolution Tolhuaca Geothermal Field, Southern Chile
[20] Moreno, Maximiliano Alejandro Pavez
Role Active Crustal Faults Geothermal Systems Volcanic Areas: Case Study Southern Chile Magnetotelluric Method
Shallow Deep Electric Structures Tolhuaca Geothermal System Chile) Investigated Magnetotellurics , Remote Sensing ,14,6144
[22] Pavez, Maximiliano and Schill, Eva and Held, Sebastian and Díaz, Daniel and Kohl, Thomas, [2020]
Visualizing Preferential Magmatic Geothermal Fluid Pathways Electric Conductivity Villarrica Volcano, S-chile , Journal Volcanology Geothermal Research ,400,106913
[23] Reyes-Wagner, Valentina and Díaz, Daniel and Cordell, Darcy and Unsworth, Martyn, [2017]
Regional Electrical Structure Andean Subduction Zone Central Chile (35°–36°s) Using Magnetotellurics , Earth, Planets Space ,69,142
[24] Segovia, Maria Jose and Diaz, Daniel and Slezak, Katarzyna and Zuñiga, Felipe, [2021]
Magnetotelluric Study Lagos Region (chile) Investigate Volcano-tectonic Processes Southern Andes , Earth, Planets Space ,73,5
Crustal Structure Lazufre Volcanic Complex Southern Puna From Inversion Magnetotelluric Data: Implications Surface Uplift Evidence Melt Storage Hydrothermal Fluids , Geosphere ,19,1210--1230
Geophysical Expressions Systems—our Current Understanding , Building Exploration Capability 21st Century
Métodos Geofísicos: Sísmica de Reflexión
[1] Arriagada, Cesar and Cobbold, Peter R. and Roperch, Pierrick, [2006]
Salar Atacama Basin: Record Compressional Tectonics Central Andes Since Mid‐cretaceous , Tectonics ,25,2004TC001770
Broad Depth Range Seismic Imaging Subducted Nazca Slab, North Chile , Tectonophysics ,350,273--282
Seismic Structure North‐central Chilean Convergent Margin: Subduction Erosion Paleomagmatic , Geophysical Research Letters ,41,1523--1529
[4] Grad, M. and Guterch, A. and Janik, T., [1993]
Seismic Structure Lithosphere Across Zone Subducted Drake Plate Under Antarctic Plate, West Antarctica , Geophysical Journal International ,115,586--600
[5] Groß, K. and Micksch, U. and {TIPTEQ Research Group, Seismics Team, [2008]
Reflection Seismic Survey Project Tipteq-the Inventory Chilean Subduction Zone 38.2° , Geophysical Journal International ,172,565--571
[6] Lorenzo, Juan M
Wide-angle Seismic Experiment Through Chuquicamata Copper Porphyry Cluster, Calama, Region, Chile
[7] Schijns, Heather and Madero, Gabriel, [2019]
Structural Imaging Escondida Porphyry Copper Mine, Chile, Using Seismic Reflection , SEG,3718--3721
Microseismic Reflection Imaging Central Andean Crust , Geophysical Journal International ,204,1396--1404
Métodos Geofísicos: Sísmica de Refracción
[1] Bettancourt, Ignacio, [1975]
Estudio Sísmico Preliminar, Interior Mina Chuquicamata , Sernageomin
Exploration Sedimentary Deposits Atacama Desert, Chile, Using Integrated Geophysical Techniques , Journal South American Earth Sciences ,115,103746
[3] Caceres, David and Troncoso, Rosa and Aviles, Felipe, [2021]
Estudio Geofísico Cuenca Pudeto , Sernageomin
Exploring Shallow Structure Ramón Thrust Fault Santiago, Chile (\textasciitilde33.5° Using Active Seismic Electric Methods , Solid Earth ,5,837--849
[5] Lessel, K and Schmitz, M and Giese, P
Anomalous Deeper Crust Beneath Central Andean Forearc Regions (21°-23°s)
[6] Lorenzo, Juan M
Wide-angle Seismic Experiment Through Chuquicamata Copper Porphyry Cluster, Calama, Region, Chile
Variation Crustal Structure Southern Central Andes Deduced From Seismic Refraction Investigations , Tectonics Southern Central Andes ,23--48
Shallow Anatomy Ramón Fault (chile) Constrained Geophysical Methods: Implications Role Andean Deformation , Tectonics ,39,e2020TC006294
Métodos Geofísicos: Transiente Electromagnético
[1] Aguirre, Igor and Maringue, José and Santibáñez, Isabel and Yáñez, Gonzalo, [2021]
Exploración Geofísica Acuíferos Profundos Ambientes Semiurbanos Rurales Cuencas Ante Arco Andino, Caso Estudio Acuífero Ñuble, Valle Central Chile , Andean Geology ,49
Exploration Sedimentary Deposits Atacama Desert, Chile, Using Integrated Geophysical Techniques , Journal South American Earth Sciences ,115,103746
[3] Caceres, David and Troncoso, Rosa and Aviles, Felipe, [2021]
Estudio Geofísico Cuenca Pudeto , Sernageomin
Seismic Hazard Slip Rate Crustal Faults, Estimating Characteristic Event Most Hazardous Zone: Study Case Ramón Fault, Southern Andes , Natural Hazards Earth System Sciences ,16,2511--2528
Ztem Airborne Afmag Ground Geophysical Survey Comparisons Over Pampa Lirima Geothermal Field Northern Chile
[6] Lemus, Martin and Honores, Carolina, [2020]
Sistema Geotermal Pelehue , Sernageomin ,Informe Registrado {IR
[7] Lopez, Luis and Donoso, Cecilia and Huerta, Huerta and Cifuentes, Jose and Fuentes, Felipe
Geometría Cuenca Limarí , Sernageomin ,Informe Registrado {IR
[8] Montecinos-Cuadros, Daniela and Díaz, Daniel and Yogeshwar, Pritam and Munoz-Saez, Carolina, [2021]
Characterization Shallow Structure Tatio Geothermal Field Central Andes, Chile Using Transient Electromagnetics , Journal Volcanology Geothermal Research ,412,107198
Métodos Geofísicos: Tomografía Sísmica
Three-dimensional Elastic Wave Speeds Northern Chile Subduction Zone: Variations Hydration Supraslab Mantle , Geophysical Journal International ,207,1080--1105
Fluid Melt Pathways Central Chilean Subduction Zone Near 2010 Maule Earthquake (35–36°s) Inferred From Magnetotelluric Data , Geochemistry, Geophysics, Geosystems ,20,1818--1835
Seismic Noise Tomography Chile Ridge Subduction Region: Seismic Noise Recorded , Geophysical Journal International ,182,1478--1492
[4] Huang, Zhouchuan and Tilmann, Frederik and Comte, Diana and Zhao, Dapeng, [2019]
\textitp Wave Azimuthal Anisotropic Tomography Northern Chile: Insight Into Deformation Subduction Zone , Journal Geophysical Research: Solid Earth ,124,742--765
[5] Monfret, Thierry and Pardo, M and Salazar, P and Vera, E and Eisenberg, A and Yanez, G, [2005]
Three Dimensional Wave Velocity Models Central Chile Western Argentina (31°-34°s) From Local Data Tear Between Flat Steep Segments Nazca Plate
Influence Mantle Hydration Flexure Slab Seismicity Southern Central Andes , Communications Earth Environment ,4,79
[7] Schurr, B. and Rietbrock, A., [2004]
Deep Seismic Structure Atacama Basin, Northern Chile , Geophysical Research Letters ,31,2004GL019796
[8] Wespestad, Crystal E. and et, al., [2019]
Magma Reservoir Below Laguna Maule Volcanic Field Chile Imaged With Surface‐wave.pdf , JGR
Métodos Geofísicos: Geofísica de Pozos
[1] Bilbao, Heredia and Marín, Sánchez and Martín, Cano and Lozano, Deu and Diaz, Martínez, [2024]
Processing Methodology Televiewer Data Definition Geotechnical Structural Domains , International Conference Geotechnical Geophysical Site Characterization, Barcelona
Deep Weathering Semi-arid Coastal Cordillera, Chile, Scientific Reports ,11,13057
Exploration Results Resource Conceptual Model Tolhuaca Geothermal Field, Chile, World Geothermal Congress 2010, Bali, Indonesia.
[4] Sánchez, Rubén and Ávila, Cristian and Navarro, Bárbara, [2013]
Definición de dominios estructurales 3D, integrando datos de registros Televiewer y mapeos de bancos, Mina Collahuasi, Tierra-Tecnología
Los Andes Centrales
Bolivian Altiplano Conductivity Anomaly , Journal Geophysical Research: Solid Earth ,107
[2] Budach, Ingmar and Brasse, Heinrich and Díaz, Daniel, [2013]
Crustal-scale Electrical Conductivity Anomaly Beneath Inflating Lazufre Volcanic Complex, Central Andes , Journal South American Earth Sciences ,42,144--149
[3] Godoy, E and Yanez, G and Vera, E, [1996]
Late Miocene Volcanic Thickening Chilean Central Andes Seismic Gravity Constraints , Third Isag ,17-19/9/1996
[4] Kühn, Christine and Küster, Jonas and Brasse, Heinrich, [2014]
Three-dimensional Inversion Magnetotelluric Data From Central Andean Continental Margin , Earth, Planets Space ,66,112
[5] Lessel, K and Schmitz, M and Giese, P
Anomalous Deeper Crust Beneath Central Andean Forearc Regions (21°-23°s)
[6] Lorenzo, Juan M
Wide-angle Seismic Experiment Through Chuquicamata Copper Porphyry Cluster, Calama, Region, Chile
[7] Mancini, Renzo and Diaz, Daniel and Brasse, Heinrich and {B. Godoy, [2019]
Conductivity Distribution Beneath Pedro‐linzor Volcanic Chain North Chile .pdf , JGR
[8] Monfret, Thierry and Pardo, M and Salazar, P and Vera, E and Eisenberg, A and Yanez, G, [2005]
Three Dimensional Wave Velocity Models Central Chile Western Argentina (31°-34°s) From Local Data Tear Between Flat Steep Segments Nazca Plate
[9] Reyes-Wagner, Valentina and Díaz, Daniel and Cordell, Darcy and Unsworth, Martyn, [2017]
Regional Electrical Structure Andean Subduction Zone Central Chile (35°–36°s) Using Magnetotellurics , Earth, Planets Space ,69,142
Microseismic Reflection Imaging Central Andean Crust , Geophysical Journal International ,204,1396--1404
Exploración de Recursos Minerales
Rock-magnetic Oxide Microscopic Studies Laco Iron Deposits, Chilean Andes, Implications Magnetic Anomaly Modeling , International Geology Review ,45,533--547
[2] Austin, James and Geuna, Silvana and Clark, David and Hillan, Dean, [2014]
Remanence, Self-demagnetization Their Ramifications Magnetic Modelling Iron Oxide Copper-gold Deposits: Example From Candelaria, Chile , Journal Applied Geophysics ,109,242--255
[3] Austin, James and Hillan, Dean and Geuna, Silvana and Clark, David
Magnetic Modeling Candelaria Iocg Deposit, Chile:
[4] Behn, Gerardo and Camus, Francisco and Carrasco, Pedro
Aeromagnetic Signature Porphyry Copper Systems Northern Chile Geologic Implications
[5] Bettancourt, Ignacio, [1975]
Estudio Sísmico Preliminar, Interior Mina Chuquicamata , Sernageomin
[6] Bournas, Nasreddine and Thomson, David, [2013]
Delineation Porphyry Copper-gold System Using Dcip
[7] Hoffmann-Rothe, Arne, [2002]
Combined Structural Magnetotelluric Investigation Across West Fault Zone Northern Chile , Tesis,
[8] Hope, Matthew and Andersson, Steven, [2015]
Geophysical Response Atlantida Cu-au Porphyry Deposit, Chile Undercover Discovery District , ASEG,2015,1--7
[9] Joel Jansen, Jamin Cristall, [2021]
Mineral Exploration Using Natural Fields , Targeting ,Mine to Camp scale
[10] Matthews, Jr., J.P. and Jenkins, R.A.
Geophysical Exploration Discovery Candelaria Copper Gold Deposit Chile , Integrated Exploration Case Histories ,130
[11] Rudd, Jonathan and Eng, P
Porphyry Exploration Americas
[12] Schijns, Heather and Madero, Gabriel, [2019]
Structural Imaging Escondida Porphyry Copper Mine, Chile, Using Seismic Reflection , SEG,3718--3721
[13] Watts, Anthony H., [2002]
Discovery Ujina Deposit, Collahuasi District, Chile , SEG,412--415
Geophysical Expressions Systems—our Current Understanding , Building Exploration Capability 21st Century
Geotermia
Mariposa Geothermal System, Chile. , Transactions Geothermal Resources Council
Levantamiento Electromagnético Z-axis Tipper (ztem) Para Evaluaciones Geotérmicas Cinco Zonas Chile , Sernageomin ,Informe Registrado {IR
Exploration Geothermal High Enthalpy Resources Using Magnetotellurics Example From Chile
Ztem Airborne Afmag Ground Geophysical Survey Comparisons Over Pampa Lirima Geothermal Field Northern Chile
[5] Lemus, Martin and Honores, Carolina, [2021]
Sistemas Geotermales Zona Volcánica Central Andes Chile (38-41° Modelos Conceptuales Base Geología Geofísica Ztem , Sernageomin ,Informe Registrado {IR
[6] Lemus, Martin and Honores, Carolina, [2020]
Sistema Geotermal Pelehue , Sernageomin ,Informe Registrado {IR
Exploration Results Resource Conceptual Model Tolhuaca Geothermal Field, Chile
[8] Melosh, Glenn and Moore, Joe and Stacey, Rob
Natural Reservoir Evolution Tolhuaca Geothermal Field, Southern Chile
[9] Montecinos-Cuadros, Daniela and Díaz, Daniel and Yogeshwar, Pritam and Munoz-Saez, Carolina, [2021]
Characterization Shallow Structure Tatio Geothermal Field Central Andes, Chile Using Transient Electromagnetics , Journal Volcanology Geothermal Research ,412,107198
[10] Moreno, Maximiliano Alejandro Pavez
Role Active Crustal Faults Geothermal Systems Volcanic Areas: Case Study Southern Chile Magnetotelluric Method
Shallow Deep Electric Structures Tolhuaca Geothermal System Chile) Investigated Magnetotellurics , Remote Sensing ,14,6144
Estudios Regionales
Fluid Distribution Central Andes Subduction Zone Imaged With Magnetotellurics , Journal Geophysical Research: Solid Earth ,124,4017--4034
Bolivian Altiplano Conductivity Anomaly , Journal Geophysical Research: Solid Earth ,107
[3] Brasse, Heinrich and Soyer, Wolfgang, [2001]
Magnetotelluric Study Southern Chilean Andes , Geophysical Research Letters ,28,3757--3760
Broad Depth Range Seismic Imaging Subducted Nazca Slab, North Chile , Tectonophysics ,350,273--282
Three-dimensional Elastic Wave Speeds Northern Chile Subduction Zone: Variations Hydration Supraslab Mantle , Geophysical Journal International ,207,1080--1105
Seismic Structure North‐central Chilean Convergent Margin: Subduction Erosion Paleomagmatic , Geophysical Research Letters ,41,1523--1529
[7] Donoso, Cecilia and Velasquez, Ricardo, [2022]
Caracterización Gravimétrica Área Concepción-talcahuano , Sernageomin ,Informe Registrado {IR
Seismic Noise Tomography Chile Ridge Subduction Region: Seismic Noise Recorded , Geophysical Journal International ,182,1478--1492
Magnetic Anomaly Data From Regional Survey: From Tierra Fuego Northern Palmer Land , Latinmag Letters Special Issue ,Volume 1
[10] Godoy, E and Yanez, G and Vera, E, [1996]
Late Miocene Volcanic Thickening Chilean Central Andes Seismic Gravity Constraints , Third Isag ,17-19/9/1996
[11] Groß, K. and Micksch, U. and {TIPTEQ Research Group, Seismics Team, [2008]
Reflection Seismic Survey Project Tipteq-the Inventory Chilean Subduction Zone 38.2° , Geophysical Journal International ,172,565--571
[12] Honores, Carolina, [2021]
Levantamiento Electromagnético Z-axis Tipper (ztem) Para Evaluaciones Geotérmicas Cinco Zonas Chile , Sernageomin ,Informe Registrado {IR
[13] Huang, Zhouchuan and Tilmann, Frederik and Comte, Diana and Zhao, Dapeng, [2019]
\textitp Wave Azimuthal Anisotropic Tomography Northern Chile: Insight Into Deformation Subduction Zone , Journal Geophysical Research: Solid Earth ,124,742--765
[14] Kühn, Christine and Küster, Jonas and Brasse, Heinrich, [2014]
Three-dimensional Inversion Magnetotelluric Data From Central Andean Continental Margin , Earth, Planets Space ,66,112
[15] Lessel, K and Schmitz, M and Giese, P
Anomalous Deeper Crust Beneath Central Andean Forearc Regions (21°-23°s)
[16] Monfret, Thierry and Pardo, M and Salazar, P and Vera, E and Eisenberg, A and Yanez, G, [2005]
Three Dimensional Wave Velocity Models Central Chile Western Argentina (31°-34°s) From Local Data Tear Between Flat Steep Segments Nazca Plate
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Gravimetría Área Unión-hueicolla , Sernageomin
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Regional Electrical Structure Andean Subduction Zone Central Chile (35°–36°s) Using Magnetotellurics , Earth, Planets Space ,69,142
Influence Mantle Hydration Flexure Slab Seismicity Southern Central Andes , Communications Earth Environment ,4,79
[20] Schurr, B. and Rietbrock, A., [2004]
Deep Seismic Structure Atacama Basin, Northern Chile , Geophysical Research Letters ,31,2004GL019796
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Cartas Magneticas Chile , Sernageomin
[22] Varios
Cartas Espectrometría Rayos Gamma Chile , Sernageomin
[23] Varios
Cartas Gravimería Chile , Sernageomin
Variation Crustal Structure Southern Central Andes Deduced From Seismic Refraction Investigations , Tectonics Southern Central Andes ,23--48
Estudios de Subducción y Margen Continental
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Bolivian Altiplano Conductivity Anomaly , Journal Geophysical Research: Solid Earth ,107
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Magnetotelluric Study Southern Chilean Andes , Geophysical Research Letters ,28,3757--3760
Broad Depth Range Seismic Imaging Subducted Nazca Slab, North Chile , Tectonophysics ,350,273--282
Three-dimensional Elastic Wave Speeds Northern Chile Subduction Zone: Variations Hydration Supraslab Mantle , Geophysical Journal International ,207,1080--1105
Seismic Structure North‐central Chilean Convergent Margin: Subduction Erosion Paleomagmatic , Geophysical Research Letters ,41,1523--1529
Fluid Melt Pathways Central Chilean Subduction Zone Near 2010 Maule Earthquake (35–36°s) Inferred From Magnetotelluric Data , Geochemistry, Geophysics, Geosystems ,20,1818--1835
Seismic Noise Tomography Chile Ridge Subduction Region: Seismic Noise Recorded , Geophysical Journal International ,182,1478--1492
[9] Grad, M. and Guterch, A. and Janik, T., [1993]
Seismic Structure Lithosphere Across Zone Subducted Drake Plate Under Antarctic Plate, West Antarctica , Geophysical Journal International ,115,586--600
[10] Groß, K. and Micksch, U. and {TIPTEQ Research Group, Seismics Team, [2008]
Reflection Seismic Survey Project Tipteq-the Inventory Chilean Subduction Zone 38.2° , Geophysical Journal International ,172,565--571
[11] Huang, Zhouchuan and Tilmann, Frederik and Comte, Diana and Zhao, Dapeng, [2019]
\textitp Wave Azimuthal Anisotropic Tomography Northern Chile: Insight Into Deformation Subduction Zone , Journal Geophysical Research: Solid Earth ,124,742--765
[12] Kühn, Christine and Küster, Jonas and Brasse, Heinrich, [2014]
Three-dimensional Inversion Magnetotelluric Data From Central Andean Continental Margin , Earth, Planets Space ,66,112
[13] Monfret, Thierry and Pardo, M and Salazar, P and Vera, E and Eisenberg, A and Yanez, G, [2005]
Three Dimensional Wave Velocity Models Central Chile Western Argentina (31°-34°s) From Local Data Tear Between Flat Steep Segments Nazca Plate
[14] Reyes-Wagner, Valentina and Díaz, Daniel and Cordell, Darcy and Unsworth, Martyn, [2017]
Regional Electrical Structure Andean Subduction Zone Central Chile (35°–36°s) Using Magnetotellurics , Earth, Planets Space ,69,142
Influence Mantle Hydration Flexure Slab Seismicity Southern Central Andes , Communications Earth Environment ,4,79
Microseismic Reflection Imaging Central Andean Crust , Geophysical Journal International ,204,1396--1404
Estudios Sismológicos
Crustal Seismicity Western Andean Thrust (central Chile, 33°–34° Implications Regional Tectonics Seismic Hazard Santiago Area , Bulletin Seismological Society America ,109,1985--1999
Fluid Distribution Central Andes Subduction Zone Imaged With Magnetotellurics , Journal Geophysical Research: Solid Earth ,124,4017--4034
Broad Depth Range Seismic Imaging Subducted Nazca Slab, North Chile , Tectonophysics ,350,273--282
Seismic Structure North‐central Chilean Convergent Margin: Subduction Erosion Paleomagmatic , Geophysical Research Letters ,41,1523--1529
Fluid Melt Pathways Central Chilean Subduction Zone Near 2010 Maule Earthquake (35–36°s) Inferred From Magnetotelluric Data , Geochemistry, Geophysics, Geosystems ,20,1818--1835
Exploring Shallow Structure Ramón Thrust Fault Santiago, Chile (\textasciitilde33.5° Using Active Seismic Electric Methods , Solid Earth ,5,837--849
Seismic Hazard Slip Rate Crustal Faults, Estimating Characteristic Event Most Hazardous Zone: Study Case Ramón Fault, Southern Andes , Natural Hazards Earth System Sciences ,16,2511--2528
Seismic Noise Tomography Chile Ridge Subduction Region: Seismic Noise Recorded , Geophysical Journal International ,182,1478--1492
[9] Godoy, E and Yanez, G and Vera, E, [1996]
Late Miocene Volcanic Thickening Chilean Central Andes Seismic Gravity Constraints , Third Isag ,17-19/9/1996
[10] Grad, M. and Guterch, A. and Janik, T., [1993]
Seismic Structure Lithosphere Across Zone Subducted Drake Plate Under Antarctic Plate, West Antarctica , Geophysical Journal International ,115,586--600
[11] Groß, K. and Micksch, U. and {TIPTEQ Research Group, Seismics Team, [2008]
Reflection Seismic Survey Project Tipteq-the Inventory Chilean Subduction Zone 38.2° , Geophysical Journal International ,172,565--571
[12] Huang, Zhouchuan and Tilmann, Frederik and Comte, Diana and Zhao, Dapeng, [2019]
\textitp Wave Azimuthal Anisotropic Tomography Northern Chile: Insight Into Deformation Subduction Zone , Journal Geophysical Research: Solid Earth ,124,742--765
[13] Monfret, Thierry and Pardo, M and Salazar, P and Vera, E and Eisenberg, A and Yanez, G, [2005]
Three Dimensional Wave Velocity Models Central Chile Western Argentina (31°-34°s) From Local Data Tear Between Flat Steep Segments Nazca Plate
Influence Mantle Hydration Flexure Slab Seismicity Southern Central Andes , Communications Earth Environment ,4,79
[15] Schurr, B. and Rietbrock, A., [2004]
Deep Seismic Structure Atacama Basin, Northern Chile , Geophysical Research Letters ,31,2004GL019796
Shallow Anatomy Ramón Fault (chile) Constrained Geophysical Methods: Implications Role Andean Deformation , Tectonics ,39,e2020TC006294