Terahertz characteristics of regolith simulants: Effects of bulk density and water content on electromagnetic response for planetary remote sensing
S. Wang, K. Hiramatsu | 2026 | Icarus
DOI 10.1016/j.icarus.2025.116911Loading workspace
Retrieving material properties, measurements, and literature records...
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Evaluates physical, geotechnical, chemical, and mineralogical properties across the standardized 61-topic taxonomy based on comprehensive literature review synthesis.
Literature review classifications denote whether properties are documented in published syntheses. Paper links indicate peer-reviewed studies with extracted property measurements or experimental data for this simulant.
Source section: Asian lunar regolith simulants (Part 2)
Peer-reviewed scientific publications reporting measurements, characterization methods, and experimental evidence for FJS-1.
Particle, density, pore, optical, transport, acoustic, and agglutinate coverage.
5 papers with accepted evidence
S. Wang, K. Hiramatsu | 2026 | Icarus
DOI 10.1016/j.icarus.2025.116911T. Ogino, T. Kobayashi, T. Takahashi, H. Kanamori | 2016 | Journal of Aerospace Engineering
DOI 10.1061/(asce)as.1943-5525.0000633Simulants: FJS-1
Experiments and methods: Consolidation / oedometer testing, Particle size distribution, Shear testing, Sieve analysis
Open paperB.-H. Ryu, Y. Baek, Y.-S. Kim, I. Chang | 2015 | Journal of the Korean Geotechnical Society
DOI 10.7843/kgs.2015.31.7.53Simulants: FJS-1
Open paperT. Ueda, T. Matsushima, Y. Yamada | 2010 | Earth and space 2010: Engineering, science, construction, and operations in challenging environments
DOI 10.1061/41096(366)7H. Nakashima, Y. Shioji, K. Tateyama, S. Aoki, H. Kanamori, T. Yokoyama | 2008 | Journal of Space Engineering
DOI 10.1299/spacee.1.58Simulants: FJS-1
Open paperShowing 1-5 of 5 matching papers
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2.75 |
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2.75 |
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3.84* |
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10.54 |
2.94 |
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3.84* |
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