T. Noguchi

8.5k total citations
204 papers, 2.7k citations indexed

About

T. Noguchi is a scholar working on Astronomy and Astrophysics, Ecology and Geophysics. According to data from OpenAlex, T. Noguchi has authored 204 papers receiving a total of 2.7k indexed citations (citations by other indexed papers that have themselves been cited), including 149 papers in Astronomy and Astrophysics, 40 papers in Ecology and 37 papers in Geophysics. Recurrent topics in T. Noguchi's work include Astro and Planetary Science (132 papers), Planetary Science and Exploration (99 papers) and Isotope Analysis in Ecology (37 papers). T. Noguchi is often cited by papers focused on Astro and Planetary Science (132 papers), Planetary Science and Exploration (99 papers) and Isotope Analysis in Ecology (37 papers). T. Noguchi collaborates with scholars based in Japan, United States and France. T. Noguchi's co-authors include Tomoki Nakamura, Toru Yada, A. Tsuchiyama, M. E. Zolensky, Kentaro Uesugi, Makoto Kimura, Aiko Nakato, Tsukasa Nakano, T. Ushikubo and Masanao Abe and has published in prestigious journals such as Science, Proceedings of the National Academy of Sciences and Nature Communications.

In The Last Decade

T. Noguchi

185 papers receiving 2.6k citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
T. Noguchi Japan 30 2.2k 745 451 410 141 204 2.7k
Shogo Tachibana Japan 31 2.3k 1.0× 554 0.7× 421 0.9× 453 1.1× 125 0.9× 158 3.0k
Tomoki Nakamura Japan 35 3.5k 1.6× 1.4k 1.8× 610 1.4× 712 1.7× 192 1.4× 244 4.0k
A. T. Kearsley United Kingdom 31 2.2k 1.0× 664 0.9× 441 1.0× 368 0.9× 154 1.1× 163 2.9k
C. Floss United States 42 3.4k 1.5× 1.5k 2.0× 596 1.3× 675 1.6× 81 0.6× 214 4.2k
Yunbin Guan United States 35 2.2k 1.0× 1.3k 1.8× 483 1.1× 735 1.8× 135 1.0× 117 3.6k
B. Zanda France 34 2.9k 1.3× 1.4k 1.9× 474 1.1× 696 1.7× 59 0.4× 150 3.5k
D. S. Ebel United States 35 3.3k 1.5× 1.9k 2.5× 750 1.7× 462 1.1× 147 1.0× 206 4.3k
M. Bourot-Denise France 22 1.8k 0.8× 978 1.3× 327 0.7× 411 1.0× 85 0.6× 71 2.2k
R. D. Ash United States 31 2.0k 0.9× 1.6k 2.2× 398 0.9× 536 1.3× 84 0.6× 152 3.2k
Naoya Sakamoto Japan 25 1.2k 0.5× 827 1.1× 250 0.6× 298 0.7× 59 0.4× 132 2.2k

Countries citing papers authored by T. Noguchi

Since Specialization
Citations

This map shows the geographic impact of T. Noguchi's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by T. Noguchi with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites T. Noguchi more than expected).

Fields of papers citing papers by T. Noguchi

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by T. Noguchi. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by T. Noguchi. The network helps show where T. Noguchi may publish in the future.

Co-authorship network of co-authors of T. Noguchi

This figure shows the co-authorship network connecting the top 25 collaborators of T. Noguchi. A scholar is included among the top collaborators of T. Noguchi based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with T. Noguchi. T. Noguchi is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Noguchi, T., D. Nakashima, T. Ushikubo, et al.. (2024). Chondrule-like objects and a Ca-Al-rich inclusion from comets or comet-like icy bodies. Geochimica et Cosmochimica Acta. 381. 131–155.
2.
Matsumoto, Toru, T. Noguchi, Akira Miyake, et al.. (2024). Sodium carbonates on Ryugu as evidence of highly saline water in the outer Solar System. Nature Astronomy. 8(12). 1536–1543. 6 indexed citations
4.
Matsumoto, Toru, Akira Miyake, Dennis Harries, T. Noguchi, & F. Langenhorst. (2019). Shock Melting Features in Regolith Particles of S-Type Asteroid Itokawa. LPICo. 82(2157). 6213. 1 indexed citations
5.
Terada, Kentaro, Yuji Sano, Naoto Takahata, et al.. (2018). Thermal and impact histories of 25143 Itokawa recorded in Hayabusa particles. Scientific Reports. 8(1). 11806–11806. 20 indexed citations
6.
Takagi, Yasunari, T. Noguchi, Makoto Kimura, & Akira Yamaguchi. (2014). Crystallization and subsolidus processes of the NWA 6704 ungrouped achondrite. Japan Geoscience Union. 2 indexed citations
7.
Noguchi, T., A. Pearce, U. Munari, et al.. (2014). Nova Scorpii 2014 = Tcp J17154683-3128303. 3841. 1. 2 indexed citations
8.
Yabuta, Hikaru, Sachihiko Itoh, T. Noguchi, et al.. (2012). Finding of Nitrogen-Rich Organic Material in Antarctic Ultracarbonaceous Micrometeorite. LPI. 2239. 2 indexed citations
9.
Abe, Masanao, A. Fujimura, Chisato Okamoto, et al.. (2011). Recovery, Transportation and Acceptance to the Curation Facility of the Hayabusa Re-Entry Capsule. NASA STI Repository (National Aeronautics and Space Administration). 1638. 5 indexed citations
10.
Nakamura, Tomoki, T. Noguchi, M. Tanaka, et al.. (2011). Mineralogy and Major Element Abundance of the Dust Particles Recovered from Muses-C Regio on the Asteroid Itokawa. 1766. 5 indexed citations
11.
Sakamoto, K., et al.. (2008). Possible Mineralogical Variation of D-type Asteroids Deduced from New Type Hydrous Micrometeorites Collected from Antarctic Snow. Meteoritics and Planetary Science Supplement. 43. 5140. 1 indexed citations
12.
Nakamura, Tomoki, et al.. (2005). Mineralogy of Ultracarbonaceous Large Micrometeorites. M&PSA. 40. 5046. 13 indexed citations
13.
Noguchi, T., et al.. (2003). CI-like chondrite clasts in ordinary chondrite regolith breccias and their implication to the investigation of the surface material of asteroids. GeCAS. 67(18). 341. 1 indexed citations
14.
Nakamura, T., T. Noguchi, T. Ushikubo, et al.. (2003). Variations of Oxygen Isotopic Compositions of Silicate Spherules Collected from Antarctic Blue Ice. LPI. 1587. 3 indexed citations
15.
Nakashima, D., Tomoki Nakamura, & T. Noguchi. (2002). Formation History of CI-like Phyllosilicate-rich Clasts in the Tsukuba Meteorite Inferred from Mineralogy and Noble Gas Signature. Meteoritics and Planetary Science Supplement. 37. 1 indexed citations
16.
Noguchi, T.. (2002). Estimation of three-dimensional internal structures of some barred olivine chondrules in Allende (CV3) chondrite. Institutional Repository National Institute of Polar Research (National Institute of Polar Research (Japan)). 15(15). 59–77. 6 indexed citations
17.
Nakai, Izumi, et al.. (1999). Characterization of cosmic dust samples by synchrotron radiation X-ray fluorescence analysis.. 24. 119–120. 1 indexed citations
18.
Noguchi, T.. (1989). Texture and chemical composition of pyroxenes in chondrules in carbonaceous and unequilibrated ordinary chondrites. Institutional Repository National Institute of Polar Research (National Institute of Polar Research (Japan)). 2(2). 169–199. 20 indexed citations
19.
Sekitani, Toru, et al.. (1985). Follow-up Study on Severe Bilateral Vestibular Impairment. Practica Oto-Rhino-Laryngologica. 78(11special). 2555–2562.
20.
Sekitani, Toru, et al.. (1984). Immunological Examination of Cerebrospinal Fluid in Patients with Vestibular Neuronitis. Practica Oto-Rhino-Laryngologica. 77(10special). 2171–2182. 1 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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