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Publication lists
[73] Room temperature stable film formation of ƒÎ-conjugated organic molecules on 3d magnetic substrate
E. Inami, M. Shimasaki, H. Yorimitsu, and T. K. Yamada
Scientific Reports 8, 353 (2018) Open Access
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[72] ƒXƒsƒ“•΋ɑ–¸ƒgƒ“ƒlƒ‹Œ°”÷‹¾‚É‚æ‚錴ŽqE•ªŽqEƒiƒmŽ¥«‘̂̎¥‹C\‘¢‰ð–¾,
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‰ÈŒ¤”ï‚m‚d‚v‚ruŋ߂̌¤‹†¬‰ÊƒgƒsƒbƒNƒXv, Vol.4, pp.10.

[71]Compendium of Surface and Interface Analysis, Chapter 103: Spin-polarized scanning tunneling microscopy (SP-STM), yBOOKz
Toyo Kazu Yamada
Springer, Singapore, DOI: 10.1007/978-981-10-6156-1 (“ú–{•\–ʉȊw‰ï"•\–Ê•ªÍ}ŠÓ"‰pŒê”Å), pp. 637-642, (2018).

[70] ƒXƒsƒ“•΋ÉSTM‚Ì”­“W‚Ì—ðŽj‚Æ¡Œã‚̉ۑè,
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“ú–{^‹óŠw‰ïŽ (Journal of the Vacuum Society of Japan), 60Šª, No.5, pp. 159-164, 2017”N.

[69]Molecular Architectonics (The Third Stage of Single Molecule Electronics), Spin polarization of single organic molecules: towards single molecular spintronicsyBOOKz
T. K. Yamada
Springer, pp. 381-397, (2017). ISBN 978-3-319-57096-9, (eBook) DOI 10.1007/978-3-319-57096-9

[68] Role of ƒÎ-d hybridization in 300-K organic-magnetic interface: metal-free phthalocyanine single molecules on bcc Fe(001)-whisker
T. K. Yamada, Y. Yamagishi, S. Nakashima, Y. Kitaoka, and K. Nakamura
Phys. Rev. B 94, 195437 (2016)
Selected as gKaleidoscopeh

[67] Temperature control of the growth of iron oxide nanoislands on Fe(001)
Toyo Kazu Yamada, Yuki Sakaguchi, Lukas Gerhard, and Wulf Wulfhekel
Japanese Journal of Applied Physics 55, 08NB14 (2016).

[66] Electron-bombarded <110>-oriented tungsten tips for stable tunneling electron emission
T. K. Yamada, T. Abe, N. M. K. Nazriq, and T. Irisawa
Review of Scientific Instruments 87, 033703 (2016).

[65] •\–Êã‚ÌŒ´ŽqƒXƒsƒ“ (Atomic spins on surfaces, Andreas Heinrich, Physics Today) y–|–óE‰ðàz
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ƒpƒŠƒeƒB, 31 (2016) 24-31.

[64] ‹ÉŒÀƒXƒsƒ“ŠÏŽ@‚ƧŒäFSP-STM (PDF 1.4MB)
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“ú–{Ž¥‹CŠw‰ï ‘æ210‰ñŒ¤‹†‰ïŽ‘—¿ugƒXƒsƒ“h‚̉Ž‹‰»‚Æ‚»‚Ì‘€ìv (2016) 17-21.

[63] Method for Controlling Electrical Properties of Single-Layer Graphene Nanoribbons via Adsorbed Planar Molecular Nanoparticles,
Hirofumi Tanaka, Ryo Arima, Minoru Fukumori, Daisuke Tanaka, Ryota Negishi, Yoshihiro Kobayashi, Seiya Kasai, Toyo Kazu Yamada and Takuji Ogawa
Scientific Reports, 5 (2015), 12341. Open Access

[62] How to get molecular spin-polarization using spin-polarized STM
T. K. Yamada,
Journal of The Surface Science Society of Japan, 36 (2015) 375-381. Review paper

[61] Electronic processes in organic electronics: Bridging electronic states and device properties. Chapter 18: Single molecular spintronicsyBOOKz
T. K. Yamada
Springer, TokyoASpringer Series in Materialsa Science 209, (2015) pp.403-416.
DOI 10.1007/978-4-431-55206-2

[60] ‘æ62‰ñ‰ž—p•¨—Šw‰ït‹GŠwpu‰‰‰ïu‚i‚r‚o‚rƒtƒHƒgƒRƒ“ƒeƒXƒgv u‘è–¼FŽ_‰»“SŒ´Žq‘w‘ä’nv
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[59] ‘æ62‰ñ‰ž—p•¨—Šw‰ït‹GŠwpu‰‰‰ïu‚i‚r‚o‚rƒtƒHƒgƒRƒ“ƒeƒXƒgv u‘è–¼F¢ŠEŬE‰_‚Ìã‚ÌŽRv
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[58] ‘æ62‰ñ‰ž—p•¨—Šw‰ït‹GŠwpu‰‰‰ïu‚i‚r‚o‚rƒtƒHƒgƒRƒ“ƒeƒXƒgv u‘è–¼Fƒ^ƒ“ƒOƒXƒeƒ“’PŒ‹»ŽRv
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[57] Room temperature spin-polarizations of Mn-based antiferromagnetic nanoelectrodes,
T. K. Yamada and A. L. Vazquez de Parga,
Appl. Phys. Lett. 105 (2014) pp.183109: 1-5. Open Access

[56] ƒ}ƒCƒNƒƒr[ƒ€ƒAƒiƒŠƒVƒXEƒnƒ“ƒhƒuƒbƒNyBOOKz
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[55] ‹­—͉i‹vŽ¥Î‚ÌŠJ”­‚ÆŽ¥‹æŠÏŽ@æ’[‹ZpyBOOKz
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[54] ‰ž—p•¨—Šw‰ïŽA}‰ðEŠwpu‰‰‰ï‘啪—Þ •\–ÊE”––Œ•ª–ì
uƒXƒsƒ“•΋ɑ–¸ƒgƒ“ƒlƒ‹Œ°”÷‹¾(STM)‚É‚æ‚é1nmƒTƒCƒY‚Ì’Pˆê—L‹@•ªŽq‚ð—p‚¢‚½¢ŠEŬEŽ¥‹C’ïRƒZƒ“ƒT[‚ÌŽÀØŽÀŒ±Bƒtƒ^ƒƒVƒAƒjƒ“•ªŽq‚ð‰î‚·‚é“`“±‚ðŽ¥«’Tj‚ƃiƒmŽ¥Î‚ÌŽ¥‹CŒ‹‡i•½sE”½•½sj‚ŧŒäBvŽR“c–L˜a, 2014”N8ŒŽ†.

[53]’Ç“‰: aŒû³æ¶‚ðŽÃ‚ñ‚ÅB
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“ú–{Ž¥‹CŠw‰ïނ܂®‚Ë, 9 (2014) 245.

[52] Recovery of nanomolecular electronic states from tunneling spectroscopy: LDOS of low-dimensional phthalocyanine molecular structures on Cu(111),
Y. Yamagishi, S. Nakashima, K. Oiso and T. K. Yamada,
Nanotechnology 24 (2013) 395704 (11pp).

[51] How contacting electrodes affect single ƒÎ-conjugated molecular electronic states: ?LDOS of phthalocyanine nano molecules on MgO(001), Cu(111), Ag(001), Fe(001) and Mn(001),
Shuhei Nakashima, Yuhei Yamagishi, Kenji Oiso, Toyo Kazu Yamada,
Japanese Journal of Applied Physics (Selected Topics in Applied Physics: Nano Electronics and Devices: Characterization and Control of Nano Surfaces and Interfaces),
Jpn. J. Appl. Phys. 52 (2013) 110115. Open Access

[50] ƒXƒsƒ“•΋ɑ–¸ƒgƒ“ƒlƒ‹Œ°”÷‹¾FƒiƒmÞ—¿‚ÌŒ´ŽqƒXƒP[ƒ‹Ž¥‹CƒCƒ[ƒWƒ“ƒO
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“ú–{Œ°”÷‹¾Šw‰ïŽ, 48 (2013) 20-25. Review paper , Open Access

[49] ’Pˆêƒiƒm•ªŽqEŽ¥‹C’ïR‘fŽq`ƒXƒsƒ“•΋ÉSTM‚É‚æ‚é’Pˆê•ªŽq“dŽqƒXƒsƒ““`“±‘ª’è`
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•\–ʉȊw, 34 (2013) 443-448. Review paper

[48] uƒiƒmv‚ð’Ê‚¶‚½‘ÛŒð—¬B
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Œö‰và’c–@lŽR“c‰ÈŠwU‹»à’c@à’cƒjƒ…[ƒX•½¬25”N“x‘æ1†App.18, 2013”N

[47] Spintronics with single molecules,
W. Wulfhekel, T. Miyamachi, S. Schmaus, T.K. Yamada, A. F. Takacs, A. Bagrets, F. Evers, T. Balashov, M. Gruber, V. Davesne, M. Bowen, and E. Beaurepaire
IEEE NANO proceedings, 2012 12th IEEE Internationa; Conference on Nanotechnology, (2012) 957-961.

[46] Single molecule magnetoresistance with combined antiferromagnetic and ferromagnetic electrodes,
A. Bagrets, S. Schmaus, A. Jaafar, D. Kramczynski, T.K. Yamada, M. Alouani, W. Wulfhekel, and F. Evers,
Nano Letters, 12, (2012) 5131-5136.

[45] Robust spin crossover and memristance across a single molecule,
T. Miyamachi, M. Gruber, V. Davesne, M. Bowen, S. Boukari, F. Scheurer, G. Rogez, T. K. Yamada, P. Phresser, E. Beaurepaire, and W. Wulfhekel,
Nature Communications, 3, (2012) 938. Open Access

[44] Electric Field Control of Fe Nano Magnets,
T. K. Yamada, L. Gerhard, R.J.H. Wesselink, A. Ernst, and Wulf Wulfhekel,
J. Magn. Soc. Jpn., 36, (2012) 100-103. Open Access

[43] “dŠE‚É‚æ‚é“SƒiƒmŽ¥Î§ŒäF‹à‘®•\–ʂł̎¥‹C“d‹CŒ‹‡
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“ú–{‹à‘®Šw‰ïŽ‚Ü‚Ä‚è‚ , 51 (2012) 475-479. Review paper

[42] `]—ˆ‚Ì100”{—e—ʂ̋L˜^‚ð‰Â”\‚É‚·‚é`V‚µ‚¢“Sƒiƒm‹L˜^Þ—¿
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Material Stage iŒŽŠ§@ƒ}ƒeƒŠƒAƒ‹ƒXƒe[ƒWj, 12 (2012) 57-60.

[41] ‚PŒÂ‚Ì“SŒ´Žq‚Åî•ñ‹L˜^‚ɬŒ÷I`¢ŠEŬEƒiƒm•ªŽqŽ¥‹Cƒƒ‚ƒŠ`
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[40] Giant magnetoresistance through a single molecule,
S. Schmaus, A. Bagrets, Y. Nahas, T.K. Yamada, A. Bork, F. Evers, and W. Wulfhekel,
Nature Nanotechnology, 6, (2011) 185-189.

[39] Electrical control of the magnetic state of Fe,
L. Gerhard, T. K. Yamada, T. Balashov, A. F. Takacs, M. Daena, S. Ostanin, A. Ernst, I. Mertig, and W. Wulfhekel,
IEEE Transactions on Magnetics, 47, (2011) 1619-1622.

[38] Electric field control of Fe nano magnets: towards metallic non-volatile data-storage devices,
Toyo Kazu Yamada, Lukas Gerhard, Timofey Balashov, Albert F. Takacs, Rien J. H. Wesselink, and Wulf Wulfhekel,
Japanese Journal of Applied Physics, 50 (2011) 08LA03: 1-5. Review paper

[37] STM‚ªØ‚è‘ñ‚­V‚½‚ȃXƒsƒ“ƒfƒoƒCƒX‚Ì‘n¬,
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“ú–{Ž¥‹CŠw‰ïނ܂®‚Ë, 6 (2011) 333-341. Review paper

[36] “dŠE‚É‚æ‚é“SƒiƒmŽ¥Î§ŒäF‹à‘®•\–ʂł̎¥‹C“d‹CŒ‹‡‚Ì”­Œ© yEditorfs Choicez,
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•\–ʉȊw, 32 (2011) 361-367. Review paper

[35] “ú–{”­¢ŠE‚ð•Ï‚¦‚éƒGƒR‹Zp iŽR“c–L˜a's ƒCƒ“ƒ^ƒrƒ…[‹LŽ–jyBOOKz
’˜FŽR˜H’B–ç, ƒ|ƒbƒgo”Å (2011) 91-99.
ISBN978-4-7808-0161-3 C0040

[34] Magneto-electric coupling at metal surfaces,
L. Gerhard, T.K. Yamada, T. Balashov, A.F. Takacs, M. Daena, S. Ostanin, A. Ernst, I. Mertig, and W. Wulfhekel,
Nature Nanotechnology, 5, (2010) 792-797.

[33] Ž¥‹CƒCƒ[ƒWƒ“ƒOƒnƒ“ƒhƒuƒbƒN, “ú–{Ž¥‹CŠw‰ï•Ò, yBOOKz
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ŽR“c–L˜a, ‘æ‚PÍ. (2010) 15-44.
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[32] Spin polarization vectors of field emitted electrons from apexes of Fe-coated W tips,
T. Irisawa, T. K. Yamada, and T. Mizoguchi,
New Journal of Physics, 11, (2009) 113031.

[31] Surface reconstruction of clean bcc-Fe{110}: A quasi-hexagonal top-layer with periodic height modulation,
T. K. Yamada, H. Tamura, M. Shishido, T. Irisawa, and T. Mizoguchi,
Surface Science, 603, (2009) 315-319.

[30] Requirement of Ala residues at g position in heptad sequence of ƒ¿-helix-forming peptide for formation of fibrous structure,
G. Aoki, T. K. Yamada, M. Arii, S. Kojima and T. Mizoguchi,
Journal of Biochemistry, 144, (2008) 15-19. Open Access

[29] Spin configuration in a frustrated ferromagnetic/antiferromagnetic thin-film system,
T. K. Yamada, E. Martinez, A. Vega, R. Robles, D. Stoeffler, A. L. Vazqeuz de Parga, T. Mizoguchi and H. van Kempen,
Nanotechnology, 18 (2007) 235702: 1-6.

[28] Spin-Polarized Scanning Tunneling Microscopy,
T. K. Yamada and T. Mizoguchi
The Physical Society of Japan, 62Šª, No.7, pp.499-508, 2007”N.
Cover image (•\ކ, 20MB) Review paper

[27] Spin-Polarized STM/STS: An Ultimate Experiment in Magnetism,
T. K. Yamada and T. Mizoguchi
Solid State Physics, 42 (2007) 749-756. Review paper

[26] Enormous electron emission from polygonal W tip,
T. Irisawa, T. K. Yamada, and T. Mizoguchi,
6th International Symposium on Atomic Level Characterizations for New Materials and Devices 2007 (ALC07) Proceedings: JSPS1441 Committee Activity Report (2007).

[25] Spin-Polarized Scanning Tunneling Microscopy / Spectroscopy,
T. K. Yamada,
Report of The Magnetics Society of Japan Symposium, 155 (2007) 41-46.

[24] Study of magnetic interaction between ferromagnetic and anti-ferromagnetic layers by means of spin-polarized scanning tunneling spectroscopy: Fe/Mn/Fe(001)-multilayers,
T. K. Yamada, and T. Mizoguchi,
Report of The Magnetics Society of Japan Symposium, 140 (2007) 21-27.

[23] Study of c(2x2)-MnAu(100) layers on Mn(001) by means of scanning tunneling microscopy /spectroscopy,
T. K. Yamada, A. L. Vazqeuz de Parga, M. M. J. Bischoff, T. Mizoguchi and H. van Kempen,
Surface Science, 600 (2006) 1048-1053.

[22] Evaluation of sample spin-polarization from spin-polarized scanning tunneling spectroscopy experiments,
T. K. Yamada, A. L. Vazquez de Parga, M. M. J. Bischoff, T. Mizoguchi, and H. van Kempen,
Microscopy Research and Technique, 66 (2005) 93-104.

[21] Characterization of Fe/W spin-polarized tips by means of holographic TEM and spin-polarized STS of optically pumped p-GaAs,
T. Matsuda, A. Tonomura, T. K. Yamada, D. Okuyama, N. Mizuno, A. L. Vazqeuz de Parga, H. van Kempen and T. Mizoguchi,
IEEE Transactions and Magnetics, 41 (2005) 3727-3729.

[20] Study of magnetic structure of manganese (001) atomic layers by means of spin-polarized scanning tunneling microscopy / spectroscopy having sub-nanometer scale magnetic resolution,
T. K. Yamada and T. Mizoguchi,
Materia Japan, 44, (2005) 975.

[19] Spin-polarized scanning tunneling microscopy / spectroscopy study of MnAu(001) thin films,
T.K. Yamada, R. Robles, E. Martinez, M.M.J. Bischoff, A. Vega, A.L. Vazqeuz de Parga, T.Mizoguchi and H. van Kempen,
Physical Review B, 72 (2005) 014410: 1-4.

[18] Spin-Polarized Scanning Tunneling Microscopy/Spectroscopy and Quantitative Analysis studied on Mn(001)
T. K. Yamada and T. Mizoguchi
Journal of The Surface Science Society of Japan, 26 (2005) 2-10. Review paper

[17] Study of spin-polarized scanning tunneling microscopy/spectroscopy on ultra-thin magnetic films and multilayers: sub-nanometer scale magnetism,
T. K. Yamada,
Radboud University Nijmegen, Ph.D thesis (2005) 1-193. (Download, 19MB)
ISBN90-9019035-X

[16] Study of Fe/Mn/Fe(001) multilayers by means of scanning tunneling microscopy/spectroscopy,
T. K. Yamada, M. M. J. Bischoff, A. L. Vazqeuz de Parga, T. Mizoguchi and H. van Kempen,
Surface Science, 558 (2004) 201-210.

[15] Sub-Nanometer Scale Mgnetism of Ultra-Thin Manganese Films on Fe(001) studied by means of Spin-Polarized Scanning Tunneling Microscopy/Spectroscopy,
T. K. Yamada,
Gakushuin University, Ph.D thesis (2004) 1-113.

[14] Introduction of Basic Magnetism through Experiments V,
T. Mizoguchi and T. K. Yamada,
Journal of the Magnetics Society of Japan, 28 (2004) 1142-1149.

[13] Observation of spin-polarized surface states on ultrathin bct Mn(001) films by spin-polarized scanning tunneling spectroscopy,
T. K. Yamada, M. M. J. Bischoff, G. M. M. Heijnen, T. Mizoguchi, and H. van Kempen,
Physical Review Letters, 90 (2003) 056803: 1-4.

[12] Origin of magnetic contrast in spin-polarized scanning tunneling spectroscopy: experiments on ultra-thin Mn films
T. K. Yamada, M. M. J. Bishoff, G. M. M. Heijnen, T. Mizoguchi, and H. van Kempen,
Japanese Journal of Applied Physics, 42 (2003) 4688-4691.

[11] Data evaluation for spin-polarized scanning tunneling spectroscopy measurements,
T. K. Yamada, A. L. Vazquez de Parga, M. M. J. Bischoff, T. Mizoguchi, and H. van Kempen,
AIP Conf. Proc., 696 (2003) 608-614.

[10] Use of voltage pulses to detect spin-polarized tunneling,
T. K. Yamada, M. M. J. Bischoff, T. Mizoguchi, and H. van Kempen
Applied Physics Letters, 82 (2003) 1437-1439. (Cover image)

[9] Scanning Tunneling Spectroscopy Study of Surface States of 3d Metals: Chemical Identification, Magnetic Contrast and Orbital Kondo Resonance State,
M. M. J. Bischoff, C. M. Fang, R. A. de Groot, G. M. M. Heijnen, M. I. Katsnelson, O. Yu. Kolesnychenko, R. de Kort, A. I. Lichtenstein, A. J. Quinn, A. L. Vazqeuz de Parga, T. K. Yamada and H. van Kempen,
Acta Physica Polonica A, 104 (2003) 231-243.

[8] Local electronic structure of Fe(001) surfaces studied by scanning tunneling spectroscopy,
M. M. J. Bischoff, T. K. Yamada, C. M. Fang, R. A. de Groot and H. van Kempen,
Physical Review B, 68 (2003) 045422: 1-7.

[7] Analysis of the short-range order of the Au/Fe(001) surface alloy,
M. M. J. Bischoff, T. K. Yamada, and H. van Kempen
Physical Review B, 67 (2003) 165403: 1-7.

[6] Scanning tunneling microscopy and spectroscopy study on the submonolayer growth of Mn on Fe(001)
M. M. J. Bischoff, T. Yamada, A. J. Quinn, and H. van Kempen
Surface Science, 501 (2002) 155-167.

[5] STM and STS study of ultrathin Mn layers on Fe(001),
T. K. Yamada, M. M. J. Bischoff, T. Mizoguchi, and H. van Kempen,
Surface Science, 516 (2002) 179-190.

[4] Photoemission and STM, STS Study of Cs/p-GaAs(110),
T. Yamada, J. Fujii, T. Mizoguchi
CP570, SPIN2000, 14th International Spin Physics Symposium, 908-911, (2001).

[3] STM, STS, and Local Work Function Study of Cs/p-GaAs(110),
T. Yamada, J. Fujii, T. Mizoguchi,
Surface Science, 479 (2001) 33-42.

[2] Polarization of Secondary Electrons from Clean and Oxygen-Chemisorbed Ni(110),
Y. Oshima, T. Yamada, J. Fujii, and T. Mizoguchi,
Trans. Magn. Soc. Japan, 1 (2001) 16-21. Open Access

[1] Direct observation of surface alloying and interface roughening: Growth of Au on Fe(001)?,
M. M. J. Bischoff, T. Yamada, A. J. Quinn, R. G. P. van der Kraan, and H. van Kempen,
Physical Review Letters, 87 (2001) 246102: 1-4.