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Hofstadter’s butterfly and the fractal quantum Hall effect in moiré superlattices
Dean, C. R., Wang, L., Maher, P., Forsythe, C., Ghahari, F., Gao, Y., Katoch, J., Ishigami, M., Moon, P., Koshino, M., Taniguchi, T., Watanabe, K., Shepard, K. L., Hone, J., Kim, P.
Published in Nature (London) (30.05.2013)
Published in Nature (London) (30.05.2013)
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A topological Dirac insulator in a quantum spin Hall phase
Hsieh, D., Qian, D., Wray, L., Xia, Y., Hor, Y. S., Cava, R. J., Hasan, M. Z.
Published in Nature (London) (24.04.2008)
Published in Nature (London) (24.04.2008)
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Observation of the fractional quantum Hall effect in graphene
Bolotin, Kirill I., Ghahari, Fereshte, Shulman, Michael D., Stormer, Horst L., Kim, Philip
Published in Nature (London) (12.11.2009)
Published in Nature (London) (12.11.2009)
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Observation of unidirectional backscattering-immune topological electromagnetic states
Wang, Zheng, Chong, Yidong, Joannopoulos, J. D., Soljačić, Marin
Published in Nature (London) (08.10.2009)
Published in Nature (London) (08.10.2009)
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Fractional quantum Hall effect and insulating phase of Dirac electrons in graphene
Du, Xu, Skachko, Ivan, Duerr, Fabian, Luican, Adina, Andrei, Eva Y.
Published in Nature (London) (12.11.2009)
Published in Nature (London) (12.11.2009)
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Molecular transport junctions : vibrational effects
GALPERIN, Michael, RATNER, Mark A, NITZAN, Abraham
Published in Journal of physics. Condensed matter (14.03.2007)
Published in Journal of physics. Condensed matter (14.03.2007)
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The microscopic nature of localization in the quantum Hall effect
Ilani, S., Martin, J., Teitelbaum, E., Smet, J. H., Mahalu, D., Umansky, V., Yacoby, A.
Published in Nature (London) (22.01.2004)
Published in Nature (London) (22.01.2004)
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Thermal Interface Properties of Cu-filled Vertically Aligned Carbon Nanofiber Arrays
Ngo, Quoc, Cruden, Brett A, Cassell, Alan M, Sims, Gerard, Meyyappan, M, Li, Jun, Yang, Cary Y
Published in Nano letters (01.12.2004)
Published in Nano letters (01.12.2004)
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Improvement of (001)-oriented diamond p-i-n diode by use of selective grown n+ layer
Kato, Hiromitsu, Makino, Toshiharu, Ogura, Masahiko, Tokuda, Norio, Oyama, Kazuhiro, Takeuchi, Daisuke, Okushi, Hideyo, Yamasaki, Satoshi
Published in Physica status solidi. A, Applications and materials science (01.09.2010)
Published in Physica status solidi. A, Applications and materials science (01.09.2010)
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The surface science of semiconductor processing: gate oxides in the ever-shrinking transistor
Weldon, Marcus K, Queeney, K.T, Eng Jr, Joseph, Raghavachari, Krishnan, Chabal, Yves J
Published in Surface science (10.03.2002)
Published in Surface science (10.03.2002)
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A model for non-volatile electronic memory devices with strongly correlated materials
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Characterization of sputtered titanium silicide ohmic contacts on n-type 6H-silicon carbide
Getto, R, Freytag, J, Kopnarski, M, Oechsner, H
Published in Materials science & engineering. B, Solid-state materials for advanced technology (30.07.1999)
Published in Materials science & engineering. B, Solid-state materials for advanced technology (30.07.1999)
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Capacitance theory of open quantum systems with classical contacts
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Calculation of the charge spreading along a carbon nanotube seen in scanning tunnelling microscopy (STM)
Márk, G.I., Koós, A., Osváth, Z., Biró, L.P., Gyulai, J., Benito, A.M., Maser, W.K., Thiry, P.A., Lambin, Ph
Published in Diamond and related materials (01.03.2002)
Published in Diamond and related materials (01.03.2002)
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