Original Papers- SAITO Riichiro -
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total:355
[2018]
21.Inversion domain boundaries in MoSe2 layers.[RSC ADVANCES,8(58),(2018),33391-33397]Quang Duc Truong, Nguyen Tuan Hung, Nakayasu Yuta, Nayuki Keiichiro, Sasaki Yoshikazu, Kempaiah Devaraju Murukanahally, Yin Li-Chang, Tomai Takaaki, Saito Riichiro, Honma Itaru
10.1039/c8ra07205a
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[2017]
22.Two-phonon Absorption Spectra in the Layered Honeycomb Compound α-RuCl3.[Journal of Physical Society of Japan,86(12),(2017),123709-]Y. Hasegawa, T. Aoyama, K. Sasaki, Y. Ikemoto, T. Moriwaki, T. Shirakura, R. Saito, Y. Imai, K. Ohgushi
10.7566/JPSJ.86.123709
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23.Hidden symmetries in N-layer dielectric stacks.[Journal of Physics: Condensed Matter,29(45),(2017),455303-]H. Liu, M. S. Ukhtary, R. Saito
10.1088/1361-648X/aa865c
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24.Two-dimensional InSe as a potential thermoelectric material.[Applied Physics Letter,111(111),(2017),092107-]N. T. Hung, A. R. T. Nugraha, R.Saito
10.1063/1.5001184
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25.Negative Refraction in Weyl Semimetals.[Journal of Physical Society of Japan,86(86),(2017),104703-]M. Shoufie Ukhtary, A. R. T. Nugraha, and R. Saito
10.7566/JPSJ.86.104703
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26.Three-dimensional carbon Archimedean lattices for high-performance electromechanical actuators.[Carbon,125,(2017),472-479]N. T. Hung, A. R. T. Nugraha, R.Saito
10.1016/j.carbon.2017.09.083
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27.Raman Excitation Profile of the G-band Enhancement in Twisted Bilayer Graphene.[Brazillian Journal of Physics,47(6),(2017),589-593]G. S. N. Eliel, H. B. Ribeiro, K. Sato, R. Saito, Chun-Chieh Lu, Po-Wen Chiu, C. Fantini, A. Righi, M. A. Pimenta
10.1007/s13538-017-0526-8
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28.First-principles study on interlayer state in alkali and alkaline earth metal atoms intercalated bilayer graphene.[Surface Science,665,(2017),1-9]T. Kaneko, R. Saito
10.1016/j.susc.2017.07.004
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29.Mildred S. Dresselhaus OBITUARY.[PHYSICS TODAY,70(6),(2017),73-74]Endo Morinobu, Jorio Ado, Pimenta Marcos A., Saito Riichiro, Souza Filho Antonio G., Terrones Mauricio, Tomanek David
10.1063/PT.3.3603
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30.Sensitive Phonon-Based Probe for Structure Identification of 1T' MoTe2.[J. Am. Chem. Soc.,139(25),(2017),8396-8399]L. Zhou, S. Huang, Y. Tatsumi, L. Wu, H. Guo, Y.-Q. Bie, K. Ueno, T. Yang, Y. Zhu, J. Kong, R. Saito, M. Dresselhaus
10.1021/jacs.7b03445
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31.Circular dichroism of single-wall carbon nanotubes.[Physical Review B,95(15),(2017),155436-1-11]N. Sato, Y. Tatsumi, R. Saito
10.1103/PhysRevB.95.155436
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32.Charge-induced electrochemical actuation of armchair carbon nanotube bundles.[Carbon,118,(2017),278-284]N. T. Hung, A. R. T. Nugraha, R. Saito
10.1016/j.carbon.2017.03.036
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33.Quantum interference on electron scattering in graphene by carbon impurities in underlying h-BN.[Physical Review B,95(12),(2017),125421-1-7]T. Kaneko, M. Koshino, R. Saito
10.1103/PhysRevB.95.125421
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34.Electronic and Optical Properties of Single Wall Carbon Nanotubes.[TOPICS IN CURRENT CHEMISTRY,375(1),(2017)]Saito R., Nugraha A. R. T., Hasdeo E. H., Hung N. T., Izumida W.
10.1007/s41061-016-0095-2
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35.Selective coherent phonon-mode generation in single-wall carbon nanotubes.[Journal of Physics: Condensed Matter,29(5),(2017),055302-1-9]A. R. T. Nugraha, E. H. Hasdeo, R. Saito
10.1088/1361-648X/29/5/055302
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36.Stability and electronic properties of two-dimensional indium iodide.[Physical Review B,95(4),(2017),045404-1-7]J. Wang, B. Dong, H. Guo, T. Yang, Z. Zhu, G. Hu, R. Saito, Z. Zhang
10.1103/PhysRevB.95.045404
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37.Giant Terahertz-Wave Absorption by Monolayer Graphene in a Total Internal Reflection Geometry.[ACS Photonics,4(1),(2017),121-126]Y. Harada, M. S. Ukhtary, M. Wang, S. Srinivasan, E. H. Hasdeo, A. R. T. Nugraha, G. Noe, Y. Sakai, R. Vajtai, P. M. Ajayan, R. Saito, J. Kono
10.1021/acsphotonics.6b00663
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38.Size effect in thermoelectric power factor of nondegenerate and degenerate low-dimensional semiconductors.[Material today: proceedings,4(12),(2017),12368-12373]N. T. Hung, A. R. T. Nugraha, R. Saito
10.1016/j.matpr.2017.10.005
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[2016]
39.Laser energy dependence of valley polarization in transition-metal dichalcogenides.[Physical Review B,94(23),(2016),235408-1-10]Y. Tatsumi, K. Ghalamkari, R. Saito
10.1103/PhysRevB.94.235408
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40.Experimental determination of excitonic band structures of single-walled carbon nanotubes using circular dichroism spectra.[Nature Communication,7,(2016),12899-1-9]X. Wei, T. Tanaka, Y. Yomogida, N. Sato, R. Saito, H. Kataura
10.1038/ncomms12899
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