Exhibitors②

Tokyo Sokushin nanometrics

Tokyo Sokushin nanometrics

 

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Web site, SNS https://www.to-soku.co.jp/en/index.html
Tokyo Sokushin  nanometrics

Tokyo Sokushin  nanometrics

 

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Web site, SNS https://www.to-soku.co.jp/en/index.html
Earth Scientific Drilling Booth

Earth Scientific Drilling Booth

 

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Web site, SNS https://j-desc.org/
Earth Scientific Drilling booth

Earth Scientific Drilling booth

 

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Web site, SNS https://www.jamstec.go.jp/mare3/e/
Scientific Drilling Booth

Scientific Drilling Booth

 

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Web site, SNS https://www.kochi-core.jp/en/index.html
Scientific Drilling Booth

Scientific Drilling Booth

 

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Address237-0061
神奈川県横須賀市夏島町2番地15
Web site, SNS https://www.jamstec.go.jp/rimg/e/
Lazoc Inc.

Lazoc Inc.

 


DAS (Distributed Acoustic Sensor) 
measurement distance 100km
measurement points 25,000

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We will be exhibiting an actual DAS (Distributed Acoustic Sensor) with a demonstration. We have improved performance to a measurement range of 100km and a maximum number of measurement points in the distance direction of 25,000. We are a venture company developing optical fiber sensing systems. Please stop by our booth.
Catalogue available here

 

Address124-0002
1-5-3, Nishi-Kameari, Katsushika city, Tokyo, Japan
TEL03-6662-7270
FAX03-6662-7274
Web site, SNS https://lazoc.jp/english/
GeoGPT

GeoGPT

 

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Kyoto University Geoscience Union

Kyoto University Geoscience Union

 

◆Exhibition of Kyoto University Geoscience Union
The Kyoto University Geoscience Union is an aggregation of Geoscience related organizations of Kyoto University. During JpGU2025, the Kyoto University Geoscience Union will have a booth at A25 and A26 in the exhibition hall.


 
◆Booth Seminar
At the Kyoto University Geoscience Union booth, mini seminars will be held from 17:15 every evening from May 25 (Sun.) to 29 (Thu.). Faculty members from Kyoto University will introduce their research in an easy-to-understand manner. Please feel free to attend.
May 25 Tomoaki NISHIKAWA [Disaster Prevention Research Institute] Exploring Large-Scale Tectonics through Small Earthquakes
      Hajime NARUSE [Department of Geology and Mineralogy] Exploring geologic events by machine learning
May 26 Seika TANJI [Disaster Prevention Research Institute] Trace blowing & drifting snow particles
       Maki HATA [Disaster Prevention Research Institute] Mysteries of the Japan Arc structure explored by geomagnetism
May 27 Yosuke YAMASHIKI [Graduate School of Advanced Integrated Studies in Human Survivability] Three Core Concepts for Breaking the Barriers to Space Migration 
       Takuya ONO [Graduate School of Advanced Integrated Studies in Human Survivability] Lunar Glass Neo ‒ Moon Habitat with Artificial Gravity
May 28 Tomoki TSUTSUI [Disaster Prevention Research Institute] Exploring image of magma on the move
       Tetsuo KAWAKAMI [Department of Geology and Mineralogy] Partial melting of the crust inferred from nanogranitoids
May 29 Shoichi SHIGE [Department of Geophysics] Precipitation Measurement from Space
       Mamoru KATO [Graduate School of Human and Environmental Studies] Eruption of Tonga Volcano Tilted Osaka Plane

Announcement of Booth Seminar

Link to Realtime Booth Seminar (Zoom)
 
Archived past seminars in 2024



◆Introducing Videos


Division of Earth and Planetary Sciences (EPS)


Earth and Planetary Sciences YouTube Channel Division of Earth and Planetary Sciences

Disaster Prevention Research Institute (DPRI-KU)

DPRI-KU YouTube Channel DPRI-KU

Graduate School of Advanced Integrated Studies in Human Survivability (GSAIS)

GSAIS YouTube Channel SHISHU-KAN (GSAIS)
SIC Human Spaceology Center


Graduate School of Human and Environmental Studies

Graduate School of Human and Environmental Studies

 

Address606-8502
Kitashirakawaoiwake-cho, Sakyo-ku, Kyoto
Enabler LTD.

Enabler LTD.

 

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Address160-0022
Sawada Bldg. 9F, 1-15-9, Shinjuku, Shinjuku-Ku, Tokyo , Japan
TEL080-8865-5722
FAX03-6800-3305
Web site, SNS https://www.enabler.co.jp/en
QUAKEBELL

QUAKEBELL

 

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Web site, SNS http://kitvalley.com/
Japan Organization for Metals and Energy Security (JOGMEC)

Japan Organization for Metals and Energy Security (JOGMEC)

 

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Global Antarctic Science

Global Antarctic Science

 

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Web site, SNS https://glaces.lowtem.hokudai.ac.jp/en/
Ehime University, Geodynamics Research Center

Ehime University, Geodynamics Research Center

 

Introduction of GRC


 
Leading institute of high-pressure sciences brochure
◆Earth, Planetary and Materials Sciences

Geodynamics Research Center (GRC) is an international research institute where researchers conduct leading-edge studies on materials and states of the Earth's deep interior in order to reveal dynamics and evolution of the Earth and planets, based on advanced high-pressure experiments and numerical simulations. We investigate various issues of the Earth and planetary sciences, chemical composition of the Earth's lower mantle, materials and structures of the Earth's core, Earth's deep water, internal structure of solar planets and exoplanets and dynamics of the planetary interior, and expand our techniques and knowledge to a field of material sciences for synthesizing novel useful materials such as the world-hardest material "HIME-Diamond".

The radius of the Earth is about 6,400 km, but only 10 km depth is achieved by drillings. The Earth's deep interior is an unreachable place where pressure and temperature at the center are estimated to be respectively 360 GPa and 5000 K or higher. Thus, high-pressure and temperature experiments and numerical simulations are essential tools to study dynamics and composition under such extreme conditions. Developments of the techiniques at GRC lead to an innovative area of high-pressure materials sciences; syntheses of newly novel materials which are obtainable only by high pressure experiments.

◆PRIUS: Premier Research Institute for Ultrahigh-pressure Sciences

GRC operates PRIUS from 2013 which is one of the "Joint Usage / Research Centers" in Japan authorized by the Ministry of Education, Culture, Sports, Science and Technology. Missions of PRIUS, as an international education and research hub, are to conduct Earth and planetary science and material science research by using the high-pressure techniques with the objective of creating new fields of science thorough the international collaborations and interdisciplinary networks of researchers.
 
How to explore the Earth's deep interior under extreme conditions brochure
◆High-pressure and temperature experiments

GRC conducts experiments under conditions of ultra high pressure and high temperature experiments of the Earth's and planetary deep interiors by using two types of high-pressure generationg appaturs: Munti-anvil high-pressure apparatus and Diamond anvil cell apparatua. GRC is equipped with several types of Multi-anvil apparatus, including the world-largest class one of 6000-ton press, BOTCHAN.

◆Phase transitions of minerals

A “phase transition” is characterized by the change of configuration of a toms in mineral by the effect of pressure. Diamond is a high pressure form of graphite, whose phase transition occurs at 5 GPa (150 km depth). Measurements of the conditions where the phase transitions occur and changes of the physical properties of minerals (density, sound velocity, chemical properties etc) accompanying the phase transition bring fruitful information for understandings of the Earth's deep structure and materials.

◆Numeral simulations

Ab initio computations: Theoretical and computational investigation on the
ultrahigh-pressure behaviors of materials in the Earth and planets are conducted by using computer simulations based on quantum mechanics.

Fluid mechanics computation: Numerical simulations based on the fluid and continuum mechanics are conducted to reveal the convective motions in the mantle and core of the Earth and terrestrial planets for the understandings of the dynamics and evolution processes of the planets. Large scale computations using realistic parameters of the Earth, phase transitions, viscosity and compression behaviors under high pressure, are performed for 3-D spherical-geometry simulations.
 
Ultra-hard material HIME-Diamond and creation of novel materials brochure
◆What is HIME-Diamond?

HIME-Diamond synthesized in GRC is the hardest diamond and likely the hardest material in the world. Unlike normal diamond made of a single
crystal, HIME-Diamond consists of closely-packed nanometer-sized diamonds (~10 nanometers = one hundred-thousandth millimeters). Thus the HIME-Diamond is also called "Nano-polycrystalline diamond (NPD)".

◆Toward higher pressure generations

Experiments under higher pressure are of importance to investigate the interiors of the Earth and planets. The harder the compression material is, the higher the pressure we can reach and thus HIME-Diamond plays a
major role in future development of experiments at ultrahigh pressure. The high transparency of HIME-Diamond enables high-pressure experiments using optical in-situ observations and synchrotron radiations.

◆Novel polycrystalline materials and gems

GRC conducts syntheses of novel polycrystalline materials by applying techniques learned from making of HIME-Diamond. Nano-polycrystalline
stishovite (NPS) made from silica (SiO2) is one of the novel materials synthesized by GRC. NPS shows excellent physical properties having both hardness and toughness. Garnets (one of the main constituents within the Earth) with a variety of chemical compositions can be synthesized as nano-polycrystalline materials.

 

Address790-8577
2-5 Bunkyo-cho, Matsuyama, Ehime, 790-8577 Japan
TEL089-927-8165
Web site, SNS https://grc.ehime-u.ac.jp/en/
Geological Survey of Japan

Geological Survey of Japan

 

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SmartSolo Scientific

SmartSolo Scientific

 

[Booth A34]
SmartSolo Scientific
The Leader in Serving Geoscience
About SmartSolo Scientific

SmartSolo Scientific is the world leader in providing innovative geoscientific solutions. With a proven track record spanning over 25 years, we have delivered over 560,000 seismic nodes to clients worldwide. Our dedicated team of engineers, scientists, and manufacturing experts is committed to delivering cutting-edge products and services that drive research, monitoring, and detailed subsurface imaging.

Our innovative products are developed to meet the diverse needs of the geoscience community. From advanced seismic instrumentation to comprehensive field support, SmartSolo empowers research and monitoring across various geoscientific disciplines globally. Our solutions are backed by a proven track record of delivering reliable, high-performance data acquisition systems and exceptional customer service.

Our Expertise Spans

- New Generation Seismic Instrumentation and Monitoring Systems
- Seismic Survey Instruments
- Seismic Monitoring Systems
- Engineering Seismographs
- Short-Period Seismometers
- Electrical Instruments
- Comprehensive Field Support
- Data Acquisition and Processing Technologies
- Customized Engineering and System Design
- Maintenance and After-Sales Support

Trusted by Global Leaders

SmartSolo has been instrumental in numerous groundbreaking projects across the globe. Our products are renowned for their ruggedness and reliability, operating flawlessly in extreme conditions. From the scorching deserts to the frigid Arctic, our seismic nodes have proven their durability in temperatures ranging from -40°C to +70°C. Their compact size allows for easy transportation to even the most remote and challenging terrains, including mountaintops and other inaccessible locations relevant for fundamental earth science studies.

Sectors We Serve

Our expertise empowers clients across diverse sectors, including:
- Academic Research and Government: Collaborating with leading institutions to advance scientific understanding of Earth systems.
- Engineering and Environmental Geophysics: Providing critical tools for infrastructure assessment and natural hazard monitoring.
- Geothermal Energy: Contributing to the development of clean and renewable energy sources.
- Resource Studies: Supporting the assessment and responsible management of energy and mineral resources.

Our Mission: To help scientists make the world safer, greener, & more sustainable.

Whether you're advancing scientific research, assessing seismic hazards, monitoring earth processes, or studying earth resources, SmartSolo is your partner in achieving success.

 

Address518000
Room A702, A1003, A1004, and A1005, Building A&B Xintian CBC, Shixia North 2nd Street, Futian District, Shenzhen, China
TEL+86-755-88605520/+86-10-60844158
Web site, SNS https://smartsolo.com