Kanazawa University Institute of Science and Engineering, Faculty of Mathematics and Physics, Institute of Science and Engineering, Faculty of Mathematics and Physics
About Kanazawa University Institute of Science and Engineering, Faculty of Mathematics and Physics, Institute of Science and Engineering, Faculty of Mathematics and Physics
Research field (5):
Earth resource engineering, energy science
, Mathematical physics and basic theory
, Magnetism, superconductivity, and strongly correlated systems
, Thermal engineering
, Applied materials
Research keywords (5):
Cryogenics
, 冷凍
, 量子流体固体
, 低温物理
, Low Temperature Physics
Research theme for competitive and other funds (26):
2024 - 2028 磁気熱量効果を利用した磁気能動的熱交換器による水素液化法の基礎研究
2021 - 2024 極低温強磁場中回転機構による希土類化合物の磁気異方性の展開
2021 - 2024 Giant magnetocarolic effect caused by metamagnetic transition for hydrogen magnetic refrigeration
2018 - 2023 磁気冷凍技術による革新的水素液化システムの開発
2019 - 2022 Development of angle-resolved tunneling spectroscopy down to the micro Kelvin range
2018 - 2021 同軸パイプ蓄冷器による極低温小型冷凍機の高効率化への挑戦
2018 - 2021 超低温高磁場での回転機構を用いた歪測定によるf電子の新しい基底状態の展開
2017 - 2021 Research for magnetic refrigeration cycle for hydrogen liquefaction
2014 - 2017 Study on Hydrogen Magnetic Refrigeration
2014 - 2017 Hydrogen magnetic refrigeration using new magnetic materials with multiple phase transition
2010 - 2015 Novel Edge Phenomena in Spin-Triplet Superfluids
2012 - 2015 Novel quantum critical phenomena of a heavy fermion compound at ultralow temperatures in magnetic fields
2011 - 2013 不均一超流動ヘリウム3における奇周波数状態のもたらす磁気的性質の研究
2005 - 2010 Study of Quantum Critical Phenomena at Micro Kelvin Temperatures
2005 - 2008 Research for Hyperfine Nuclear Magnetism of PrPba in the Antiferro-Quadrupoinr Ordered State
2004 - 2007 Quantum phase transition of liquid helium in aerogel
2005 - 2006 ゲストからホストへ-学生主体の小学生対象演示実験
2000 - 2003 Study on Nuclear Spin Order and Quantum Fluctuation in Pt metal
1999 - 2001 3He-4He混合液相分離界面のダイナミックス-エネルギー散逸-の研究
1998 - 2001 Superfluidity of liquid ^3He in aerogel
1998 - 2001 Experimental study of free surface of superfluid 3He
1997 - 1998 収束高エネルギー密度音波による量子核生成の研究
1994 - 1996 高温超伝導体を用いた77K以下の新しいペルチェ冷凍方式の研究
1992 - 1994 液体^3Heにおける第ゼロ音波吸収の量子効果の検証
1992 - 1994 STUDY OF PHONON TRANSMISSION AT THE SOLID AND LIQUID INTERFACE OF ^3He
収束高エネルギー密度音波による量子核生成の研究
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Papers (118):
Kyohei Natsume, Tsuyoshi Shirai, Akira Uchida, Yusuke Kimura, Yuki Emori, Hiroshi Miyazaki, Gen Nishijima, Koji Kamiya, Koichi Matsumoto, Takenori Numazawa. Effects of moving magnetic materials in and out of superconducting magnet for active magnetic regenerative refrigeration system. IEEE Transactions on Applied Superconductivity. 2024
I.V. Romanova, S. Abe, G.Iu. Andreev, M.A. Cherosov, I.F. Gilmutdinov, A.G. Kiiamov, S.L. Korableva, K. Matsumoto, D.S. Nuzhina, O.A. Morozov, et al. Magnetic and magnetoelastic properties of LiYbF4 crystal in the strong magnetic field. Journal of Magnetism and Magnetic Materials. 2023. 171199-171199
Koji KAMIYA, Takenori NUMAZAWA, Koichi MATSUMOTO, Shinji MASUYAMA, Akiko T. SAITO, Hiroyuki TAKEYA, Kyohei NATSUME, Tsuyoshi SHIRAI, Akira UCHIDA. Hydrogen Liquefaction by Active Magnetic Regenerative Refrigeration. TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan). 2023. 58. 2. 63-68
Takenori NUMAZAWA, Koichi MATSUMOTO. Development of Advanced Hydrogen Liquefaction System by using Magnetic Refrigeration Technology for JST-MIRAI Large-scale Project. TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan). 2023. 58. 2. 58-62
Akiko T. SAITO, Hiroyuki TAKEYA, Takafumi D. YAMAMOTO, Koji KAMIYA, Koichi MATSUMOTO, Takenori NUMAZAWA. Magnetic Refrigerant Materials for Hydrogen Liquefaction by Active Magnetic Regenerative Refrigeration. TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan). 2023. 58. 2. 51-57
中島彩加, 浅井桃花, 阿部聡, 松本宏一, 鬼丸孝博, 山根悠, 松本圭介. Thermal expansion measurements of clathrate compound PrIr2Zn20 at low temperatures in magnetic fields: II. 日本物理学会講演概要集(CD-ROM). 2021. 76. 1
Magnetic refrigerator for hydrogen liquefaction
(26th International Congress of Refrigeration 2023)
磁気冷凍の原理と水素液化磁気冷凍の開発状況
(東北・北海道支部研究会/第2回材料研究会 2023)
Recent Progress of Magnetic Refrigerator for Hydrogen Liquefaction
(Muroran-IT Rare Earth Workshop 2022 2022)
Transport and magnetic properties of magnetic refrigerant RT2 Laves compounds (R: rare-earth)
(28th International Cryogenic Engineering Conference and International Cryogenic Materials Conference 2020 2022)
Thermal expansion and thermal conductivity of RT2 (R:Gd,Dy,Er; T:Al,Ni) intermetallic compounds for magnetic refrigerator
(10th ACASC/2nd Asian-ICMC/CSSJ Joint Conference 2020)