Skip to main content Accessibility help
×
Hostname: page-component-848d4c4894-8kt4b Total loading time: 0 Render date: 2024-06-22T18:50:25.476Z Has data issue: false hasContentIssue false

2 - Electrical Transport in Graphene: Carrier Scattering by Impurities and Phonons

from Part I

Published online by Cambridge University Press:  22 June 2017

Phaedon Avouris
Affiliation:
IBM T. J. Watson Research Center, New York
Tony F. Heinz
Affiliation:
Stanford University, California
Tony Low
Affiliation:
University of Minnesota
Get access
Type
Chapter
Information
2D Materials
Properties and Devices
, pp. 25 - 37
Publisher: Cambridge University Press
Print publication year: 2017

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

2.6 References

Novoselov, K. S. et al., Science 306, 666 (2004).Google Scholar
Tan, Y. W. et al., Phys. Rev. Lett. 99, 246803 (2007).Google Scholar
Bolotin, K. I. et al., Solid State Commun. 146, 351 (2008).Google Scholar
Dean, C. R. et al., Nat. Nano. 5, 722 (2010).CrossRefGoogle Scholar
Stauber, T., Peres, N. M. R., and Guinea, F., Phys. Rev. B 76, 205423 (2007).CrossRefGoogle Scholar
Chen, J.-H. et al., Phys. Rev. Lett. 102, 236805 (2009).Google Scholar
Elias, D. C. et al., Science 323, 610 (2009).Google Scholar
Withers, F., Dubois, M., and Savchenko, A. K., Phys. Rev. B 82, 073403 (2010).CrossRefGoogle Scholar
Adam, S. et al., Proc. Natl. Acad. Sci. USA 104, 18392 (2007).CrossRefGoogle Scholar
Chen, J.-H. et al., Nat. Phys. 4, 377 (2008).Google Scholar
Jang, C. et al., Phys. Rev. Lett. 101, 146805 (2008).Google Scholar
Hwang, E. H. and Sarma, S. D., Phys. Rev. B 77, 115449 (2008).Google Scholar
Fratini, S. and Guinea, F., Phys. Rev. B 77, 195415 (2008).Google Scholar
Chen, J.-H. et al., Nat. Nanotechnol. 3, 206 (2008).Google Scholar
Bolotin, K. I. et al., Phys. Rev. Lett. 101, 096802 (2008).Google Scholar
DaSilva, A. M. et al., Phys. Rev. Lett. 104, 236601 (2010).Google Scholar
Katsnelson, M. I. and Geim, A. K., Philos. Trans. Royal Soc. London A 366, 195 (2008).Google Scholar
Ishigami, M. et al., Nano Lett. 7, 1643 (2007).CrossRefGoogle Scholar
Cullen, W. G. et al., Phys. Rev. Lett. 105, 215504 (2010).Google Scholar
Shon, N. H. and Ando, T., J. Phys. Soc. Jpn 67, 2421 (1998).Google Scholar
Das Sarma, S. et al., Rev. Mod. Phys. 83, 407 (2011).Google Scholar
Novoselov, K. S. et al., Nature 438, 197 (2005).Google Scholar
Tan, Y. W. et al., Euro. Phys. J. Special Topics 148, 15 (2007).Google Scholar
Morozov, S. V. et al., Phys. Rev. Lett. 100, 016602 (2008).CrossRefGoogle Scholar
Ando, T., J. Phys. Soc. Jpn 75, 074716 (2006).Google Scholar
Nomura, K. and MacDonald, A. H., Phys. Rev. Lett. 98, 076602 (2007).Google Scholar
Cheianov, V. V. and Fal’ko, V. I., Phys. Rev. Lett. 97, 226801 (2006).Google Scholar
Hwang, E. H., Adam, S., and Das Sarma, S., Phys. Rev. Lett. 98, 186806 (2007).Google Scholar
Adam, S., Hwang, E. H., and Das Sarma, S., Physica E 40, 1022 (2008).Google Scholar
Novikov, D. S., Appl. Phys. Lett. 91, 102102 (2007).Google Scholar
Van Mieghem, P., Rev. Mod. Phys. 64, 755 (1992).Google Scholar
Ponomarenko, L. A. et al., Phys. Rev. Lett. 102, 206603 (2009).Google Scholar
Sanfelix, P. Cabrera et al., Surface Science 532 –535, 166 (2003).Google Scholar
Stoddart, J. C., March, N. H., and Stott, M. J., Phys. Rev. 186, 683 (1969).Google Scholar
Mezei, F. and Grüner, G., Phys. Rev. Lett. 29, 1465 (1972).Google Scholar
Titov, M. et al., Phys. Rev. Lett. 104, 076802 (2010).CrossRefGoogle Scholar
Wehling, T. O. et al., Phys. Rev. Lett. 105, 056802 (2010).CrossRefGoogle Scholar
Katsnelson, M. I., Novoselov, K. S., and Geim, A. K., Nat. Phys. 2, 620 (2006).CrossRefGoogle Scholar
Hentschel, M. and Guinea, F., Phys. Rev. B 76, 115407 (2007).Google Scholar
Boukhvalov, D. W., Katsnelson, M. I., and Lichtenstein, A. I., Phys. Rev. B 77, 035427 (2008).CrossRefGoogle Scholar
Ferreira, A. et al., Phys. Rev. B 83, 165402 (2011).Google Scholar
Ni, Z. H. et al., Nano Lett. 10, 3868 (2010).Google Scholar
Ryu, S. et al., Nano Lett. 8, 4597 (2008).Google Scholar
Katoch, J. et al., Phys. Rev. B 82, 081417 (2010).Google Scholar
Hong, X. et al., Phys. Rev. B 83, 085410 (2011).CrossRefGoogle Scholar
Guillemette, J. et al., Phys. Rev. Lett. 110, 176801 (2013).Google Scholar
Balakrishnan, J. et al., Nat. Phys. 9, 284 (2013).Google Scholar
Stabile, A. A. et al., Phys. Rev. B 92, 121411 (2015).Google Scholar
Matis, B. R. et al., Phys. Rev. B 85, 195437 (2012).Google Scholar
Chen, J.-H. et al., Nat. Phys. 7, 535 (2011).Google Scholar
Chen, J.-H. et al., Nat. Phys. 8, 353 (2012).Google Scholar
Hong, X. et al., Phys. Rev. Lett. 108, 226602 (2012).Google Scholar
McCreary, K. M. et al., Phys. Rev. Lett. 109, 186604 (2012).Google Scholar
Stolyarova, E. et al., PNAS 104, 9209 (2007).Google Scholar
Geringer, V. et al., Phys. Rev. Lett. 102, 076102 (2009).Google Scholar
Fasolino, A., Los, J. H., and Katsnelson, M. I., Nat. Mater. 6, 858 (2007).Google Scholar
Katsnelson, M. I. and Geim, A. K., Phil. Trans. R. Soc. A 366, 195 (2008).Google Scholar
Thompson-Flagg, R. C., Moura, M. J. B., and Marder, M., Europhys. Lett. 85, 46002 (2009).Google Scholar
Aranda-Espinoza, H. and Lavallee, D., Europhys. Lett. 43, 355 (1998).Google Scholar
Goldberg, J. L. et al., Surf. Sci. Lett. 249, L285 (1991).Google Scholar
Chen, J.-H. et al., Solid State Commun. 149, 1080 (2009).Google Scholar
Hess, K. and Vogl, P., Solid State Commun. 30, 807 (1979).Google Scholar
Fischetti, M. V., Neumayer, D. A., and Cartier, E. A., J. Appl. Phys. 90, 4587 (2001).Google Scholar
Perebeinos, V. et al., Nano Lett. 9, 312 (2009).Google Scholar
Freitag, M. et al., Nano Lett. 9, 1883 (2009).Google Scholar
Steiner, M. et al., Nat. Nano. 4, 320 (2009).Google Scholar
Ochoa, H. et al., Physica E 44, 963 (2012).Google Scholar
Sugihara, K., Kawamura, K., and Tsuzuku, T., J. Phys. Soc. Jpn. 47, 1210 (1979).Google Scholar

Save book to Kindle

To save this book to your Kindle, first ensure coreplatform@cambridge.org is added to your Approved Personal Document E-mail List under your Personal Document Settings on the Manage Your Content and Devices page of your Amazon account. Then enter the ‘name’ part of your Kindle email address below. Find out more about saving to your Kindle.

Note you can select to save to either the @free.kindle.com or @kindle.com variations. ‘@free.kindle.com’ emails are free but can only be saved to your device when it is connected to wi-fi. ‘@kindle.com’ emails can be delivered even when you are not connected to wi-fi, but note that service fees apply.

Find out more about the Kindle Personal Document Service.

Available formats
×

Save book to Dropbox

To save content items to your account, please confirm that you agree to abide by our usage policies. If this is the first time you use this feature, you will be asked to authorise Cambridge Core to connect with your account. Find out more about saving content to Dropbox.

Available formats
×

Save book to Google Drive

To save content items to your account, please confirm that you agree to abide by our usage policies. If this is the first time you use this feature, you will be asked to authorise Cambridge Core to connect with your account. Find out more about saving content to Google Drive.

Available formats
×