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- "Magnetic Bragg dip and Bragg edge in neutron transmission spectra of typical spin superstructures."
H. Mamiya et al., Scientific Reports, 7 (2017) 15516.
- Nature Japan ’–Ú˜_•¶F"Hyperthermic effects of dissipative structures of magnetic nanoparticles in large alternating magnetic fields," i167 cited in WoS, Top2% in 2011 Phys.j
H. Mamiya et al., Scientific Reports, 1 (2011) 157.
- "A reversion of magnetization decay in spin glasses,"
H. Mamiya et al., New Journal of Physics 12 (2010) 083007 ."
- "Aging and memory effects in superparamagnets and superspin glasses,"i323 cited in WoS, Top1% in 2005 Phys.j
M. Sasaki,..and H. Mamiya, Physical Review B. 71 [10] (2005) 104405
- "Magnetic Relaxations of Antiferromagnetic Nanoparticles in Magnetic Fields."
H. Mamiya et al., Phys. Rev. Lett. Vol.88, (2002) 067202."
- "Phase Transitions of Iron-Nitride Magnetic Fluids."i76 cited in WoSj
H. Mamiya et al., Phys. Rev. Lett, Vol.84, (2000)
6106."
- "Slow Dynamics for Spin-Glass-Like Phase of a Ferromagnetic Fine Particle System."i108 cited in WoSj
H. Mamiya et al., Phys. Rev. Lett. Vol.82,(1999) 4332.
- "Blocking and Freezing of Magnetic Moments for Iron Nitride Fine Particle Systems."i200 cited in WoS, Top2% in 1998 Phys.j
H. Mamiya et al., Phys. Rev. Lett, Vol.80, (1998)
177."
- "
Structural and magnetic studies on vanadium spinel MgV2O4,"i92 cited in WoSj
H. Mamiya et al.,
J. APPL. PHYS. 81 (1997) 5289-5291.
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ŠÔ‹{ L–¾. ‰»Šw‚ÆH‹Æ. 76 (2023) 308.
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uŽ¥‹C”M—ÊŒø‰Ê‚ðŒø—¦“I‚É—˜—p‚·‚éV‹KŽ¥‹C—â“€Þ—¿"
ŠÔ‹{ L–¾, Ž›“c “TŽ÷, “c‘º —º. ”M‘ª’è. 49 (2022) 79.
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u\‘¢Þ—¿‚Ì3ŽŸŒ³”÷×\‘¢•]‰¿v
ŠÔ‹{ L–¾, Œ´ “O, ²X–Ø ‘×—S, ‘å‹v•Û ’‰Ÿ. ¸–§HŠw‰ïŽ. 86 (2020) 201.
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u’†«Žq“§‰ß•ªŒõ–@‚ÍŽ¥«Œ¤‹†EŽ¥«Þ—¿ŠJ”‚ÉŽg‚¦‚é‚Ì‚©v"
ŠÔ‹{L–¾, ”g–ä 28, 123 (2018).
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uŽ¥«—¬‘ÌŒ¤‹†‚ÌV“WŠJF—±ŽqŠÔ‘ŠŒÝì—p‚ªˆø‚«‹N‚±‚·‹¦—ÍŒ»Û‚Æ‚»‚Ì—˜—pv"
ŠÔ‹{L–¾, ‚Ü‚®‚Ë 13, 28 (2018).
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"Recent Advances in Understanding Magnetic Nanoparticles in AC Magnetic Fields and Optimal Design for Targeted Hyperthermia"
H. Mamiya, J. Nanomater. Vol. 2013 (2013), 752973 (Fully open access).
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uŽ¥«ƒiƒm—±Žq‚̌𗬎¥ê‰ž“š‚Æ‘I‘ð“I‚ª‚ñ‰·”M—Ö@v
ŠÔ‹{L–¾, ƒ}ƒeƒŠƒAƒ‹ƒCƒ“ƒeƒOƒŒ[ƒVƒ‡ƒ“ 25, 11 (2012).
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uŽ¥Î‚ªW’c‚Æ‚µ‚ÄD‚è‚È‚·‘½—l‚ÈU•‘\‹Ž¥«’´”÷—±ŽqW‡‚É‚¨‚¯‚鑽‘ÌŒø‰Ê\v
ŠÔ‹{L–¾C’†’JŒ÷CŒÃ—ÑF•v, “ú–{•¨—Šw‰ïŽC60, 547 (2005).
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u’´íŽ¥«‚̉ðÍ\Ž¥‰»‹Èü‚ƃuƒƒbƒLƒ“ƒO‰·“x\"
ŠÔ‹{L–¾C’†’JŒ÷CŒÃ—ÑF•v, “ú–{‰ž—pŽ¥‹CŠw‰ïŽ 27, 59 (2003).
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u‘o‹ÉŽq‘ŠŒÝì—p‚·‚é‹Ž¥«‘Ì”÷—±Žq‚ÌŽ¦‚·ƒXƒsƒ“ƒOƒ‰ƒX“I’˜v
ŠÔ‹{L–¾C’†’JŒ÷CŒÃ—ÑF•v, ŒÅ‘Ì•¨— 34, 901 (1999).
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- uMagnetic fluid hyperthermia; a guide for design of thermal seeds within the limits of conventional theory/ in Nanomagnetic Materialsv
H. Mamiya, B. Jeyadevan: Ed. A. Yamaguchi, A. Hirohata, B. Stadler, Elsevier, 2021, ISBNF9780128223543
- uDesign Criteria of Thermal Seeds for Magnetic Fluid Hyperthermia From Magnetic Physics Point of View/ the first chapter in Nanomaterials for Magnetic and Optical Hyperthermia Applications
1st Editionv
H. Mamiya, B. Jeyadevan: Ed. Raluca Fratila Jesus Martinez De La Fuente, Elsevier, 2018, ISBNF9780128139288
- uŽ¥‹C•Ö——FŽ¥«”÷—±ŽqF”÷—±ŽqEƒNƒ‰ƒXƒ^[v
ŠÔ‹{L–¾i•ª’˜j, “ú–{Ž¥‹CŠw‰ï•Ò, ŠÛ‘P, 2016, ISBNF978-4-621-30014-5
- uŽ¥«—¬‘ÌŒ¤‹†‚ÌV“WŠJ@Iv
ŠÔ‹{L–¾^Šâ–{—IG •Ò, Ž¥«—¬‘ÌŒ¤‹†˜A—‰ï, 2015, ISBNF978-4-908239-00-73
- u•²‘ÌHŠwƒnƒ“ƒhƒuƒbƒNFŽ¥‹C“I«Ž¿.v
ŠÔ‹{ L–¾^–Ú‹`—Yi•ª’˜j, •²‘ÌHŠw‰ï•Ò, ’©‘q‘“X, 2014, ISBNF978-4-254-25267-5
- uŽ¥«‘̃iƒm—±Žq‚Ì’´íŽ¥«‚ÆŽ¥‹C’˜v
ŠÔ‹{L–¾, —Y¼“°‘“X, 2003, ISBNF9784841911633
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