CONDENSED MATTER: ELECTRONIC STRUCTURE, ELECTRICAL, MAGNETIC, AND OPTICAL PROPERTIES |
Prev
Next
|
|
|
Transport properties in monolayer-bilayer-monolayer graphene planar junctions |
Kai-Long Chu(储开龙)1, Zi-Bo Wang(王孜博)2, Jiao-Jiao Zhou(周娇娇)1, Hua Jiang(江华)1 |
1 College of Physics, Optoelectronics and Energy Soochow University, Suzhou 215006, China;
2 Microsystems and Terahertz Research Center, China Academy of Engineering Physics, Chengdu 610200, China |
|
|
Abstract The transport study of graphene based junctions has become one of the focuses in graphene research. There are two stacking configurations for monolayer-bilayer-monolayer graphene planar junctions. One is the two monolayer graphene contacting the same side of the bilayer graphene, and the other is the two-monolayer graphene contacting the different layers of the bilayer graphene. In this paper, according to the Landauer-Büttiker formula, we study the transport properties of these two configurations. The influences of the local gate potential in each part, the bias potential in bilayer graphene, the disorder and external magnetic field on conductance are obtained. We find the conductances of the two configurations can be manipulated by all of these effects. Especially, one can distinguish the two stacking configurations by introducing the bias potential into the bilayer graphene. The strong disorder and the external magnetic field will make the two stacking configurations indistinguishable in the transport experiment.
|
Received: 24 February 2017
Revised: 13 April 2017
Accepted manuscript online:
|
PACS:
|
72.80.Vp
|
(Electronic transport in graphene)
|
|
72.25.-b
|
(Spin polarized transport)
|
|
73.22.Pr
|
(Electronic structure of graphene)
|
|
81.05.ue
|
(Graphene)
|
|
Fund: Project supported by the National Natural Science Foundation of China (Grant No. 11374219), the Jiangsu Provincial Natural Science Foundation, China (Grant No. BK20160007), and the Research Fund for the Doctoral Program of Higher Education of China. |
Corresponding Authors:
Hua Jiang
E-mail: jianghuaphy@suda.edu.cn
|
Cite this article:
Kai-Long Chu(储开龙), Zi-Bo Wang(王孜博), Jiao-Jiao Zhou(周娇娇), Hua Jiang(江华) Transport properties in monolayer-bilayer-monolayer graphene planar junctions 2017 Chin. Phys. B 26 067202
|
[1] |
Novoselov K S, Geim A K, Morozov S V, Jiang D, Zhang Y, Dubonos S V, Grigorieva I V and Firsov A A 2004 Science 306 666
|
[2] |
Geim A K and Novoselov K S 2007 Nat. Mater. 6 183
|
[3] |
Castro Neto A H, Guinea F, Peres N M R, Novoselov K S and Geim A K 2009 Rev. Mod. Phys. 81 109
|
[4] |
Geim A K 2009 Science 324 1530
|
[5] |
Novoselov K S, Geim A K, Morozov S V, Jiang D, Katsnelson M I, Grigorieva I V, Dubonos S V and Firsov A A 2005 Nature 438 197
|
[6] |
Katsnelson M I, Novoselov K S and Geim A K 2006 Nat. Phys. 2 620
|
[7] |
Silvestrov P G and Efetov K B 2007 Phys. Rev. Lett. 98 016802
|
[8] |
Cheianov V V, Fal'ko V and Altshuler B L 2007 Science 315 1252
|
[9] |
Morozov S V, Novoselov K S, Katsnelson M I, Schedin F, Elias D C, Jaszczak J A and Geim A K 2008 Phys. Rev. Lett. 100 016602
|
[10] |
Li X, Wang X, Zhang L, Lee S and Dai H 2008 Science 319 1229
|
[11] |
Malard L M, Pimenta M A A, Dresselhaus G and Dresselhaus M S 2009 Phys. Rep. 473 51
|
[12] |
Castro E V, Novoselov K S, Morozov S V, Peres N M R, Lopes dos Santos J M B, Nilsson J, Guinea F, Geim A K and Castro Neto A H 2007 Phys. Rev. Lett. 99 216802
|
[13] |
Samarakoon D K and Wang X Q 2010 ACS Nano 4 4126
|
[14] |
Velasco J Jr, Jing L, Bao W, Lee Y, Kratz P, Aji V, Bockrath M, Lau C N, Varma C, Stillwell R, Smirnov D, Zhang F, Jung J and MacDonald A H 2012 Nat. Nanotech. 7 156
|
[15] |
Zhang Y B, Tang T T, Girit C, Hao Z, Martin M C, Zettl A, Crommie M F, Shen Y R and Wang F 2009 Nature 459 820
|
[16] |
Min H K, Sahu B, Banerjee S K and MacDonald A H 2007 Phys. Rev. B 75 155115
|
[17] |
Fiori G and Iannaccone G 2009 IEEE Electron Dev. Lett. 30 261
|
[18] |
He Z Z, Yang K W, Yu C, Liu Q B, Wang J J, Song X B, Han T T, Feng Z H and Cai S J 2016 Chin. Phys. Lett. 33 86801
|
[19] |
Chen D H, Yang M, Duan H J and Wang R Q 2015 Acta Phys. Sin. 64 097201 (in Chinese)
|
[20] |
Rezania H and Azizi F 2016 Chin. Phys. B 25 097303
|
[21] |
Jatiyanon K, Tang I M and Soodchomshom B 2016 Chin. Phys. B 25 078104
|
[22] |
He Z Z, Yang K W, Yu C, Liu Q B, Wang J J, Li J, Lu W L, Feng Z H and Cai S J 2016 Chin. Phys. B 25 067206
|
[23] |
Lee J K, Lee S C, Ahn J P, Kim S C, Wilson J I B and John P 2008 J. Chem. Phys. 129 234709
|
[24] |
Liu Z, Suenaga K, Harris P J F and Iijima S 2009 Phys. Rev. Lett. 102 015501
|
[25] |
Snyman I and Beenakker C W J 2007 Phys. Rev. B 75 045322
|
[26] |
Fiori G and Iannaccone G 2009 IEEE Electron Dev. Lett. 30 1096
|
[27] |
Kuzmenko A B, Crassee I, Van Der Marel D, Blake P and Novoselov K S 2009 Phys. Rev. B 80 165406
|
[28] |
Schulz C, Heinisch R L and Fehske H 2015 Phys. Rev. B 91 045130
|
[29] |
Puls C P, Staley N E and Liu Y 2009 Phys. Rev. B 79 235415
|
[30] |
Nilsson J, Castro Neto A H, Guinea F and Peres N M R 2007 Phys. Rev. B 76 165416
|
[31] |
González J W, Santos H, Pacheco M, Chico L and Brey L 2010 Phys. Rev. B 81 195406
|
[32] |
Koshino M, Nakanishi T and Ando T 2010 Phys. Rev. B 82 205436
|
[33] |
Hasegawa Y and Kohmoto M 2012 Phys. Rev. B 85 125430
|
[34] |
Tian J F, Jiang Y J, Childres I, Cao H L, Hu J P and Chen Y P 2013 Phys. Rev. B 88 125410
|
[35] |
Zhang Y T, Jiang H, Sun Q F and Xie X C 2010 Phys. Rev. B 81 165404
|
[36] |
Xu D W, Liu H W, Sacksteder V, Song J T, Jiang H, Sun Q F and Xie X C 2013 J. Phys.: Condens. Matter 25 105303
|
[37] |
Avsar A, Vera-Marun I J, Tan J Y, Koon G K W, Watanabe K, Taniguchi T, Adam S and Özyilmaz B 2016 NPG Asia Mater. 8 e274
|
[38] |
Huard B, Sulpizio J A, Stander N, Todd K, Yang B and Goldhaber-Gordon D 2007 Phys. Rev. Lett. 98 236803
|
[39] |
Abanin D A and Levitov L S 2007 Science 317 641
|
[40] |
Özyilmaz B, Jarillo-Herrero P, Efetov D, Abanin D A, Levitov L S and Kim P 2007 Phys. Rev. Lett. 99 166804
|
[41] |
Beenakker C W J, Akhmerov A R, Recher P and Tworzydlo J 2008 Phys. Rev. B 77 075409
|
[42] |
Li J and Shen S Q 2008 Phys. Rev. B 78 205308
|
[43] |
Balev O G and Vasko F T 2010 J. Appl. Phys. 107 124312
|
[44] |
Zheng J M, Guo P, Ren Z Y, Jiang Z Y, Bai J T and Zhang Z Y 2012 Appl. Phys. Lett. 101 083101
|
[45] |
Chung H C, Lin Y T, Lin S Y, Ho C H, Chang C P and Lin M F 2016 Carbon 109 883
|
[46] |
González J W, Santos H, Prada E, Brey L and Chico L 2011 Phys. Rev. B 83 205402
|
[47] |
Nakanishi T, Koshino M and Ando T 2010 Phys. Rev. B 82 125428
|
[48] |
Cheng S G, Zhou J J, Jiang H and Sun Q F 2016 New J. Phys. 18 103024
|
[49] |
Zhao F, Xu L and Zhang J 2016 J. Phys.: Condens. Matter 28 185001
|
[50] |
Yan W, Li S Y, Yin L J, Qiao J B, Nie J C and He L 2016 Phys. Rev. B 93 195408
|
[51] |
Lee D H and Joannopoulos J D 1981 Phys. Rev. B 23 4997
|
[52] |
Sancho M P L, Sancho J M L and Rubio J 1984 J. Phys. F: Met. Phys. 14 1205
|
[53] |
Sancho M P L, Sancho J M L and Rubio J 1985 J. Phys. F: Met. Phys. 15 851
|
[54] |
An online program is available in the supplementary materials of reference, Sun Q F and Xie X C 2010 Phys. Rev. Lett. 104 066805
|
[55] |
Guo H M, Feng S and Shen S Q 2011 Phys. Rev. B 83 045114
|
[56] |
Guo H M 2010 Phys. Rev. B 82 115122
|
[57] |
Zhang Y, Jiang Z, Small J P, Purewal M S, Tan Y W, Fazlollahi M, Chudow J D, Jaszczak J A, Stormer H L and Kim P 2006 Phys. Rev. Lett. 96 136806
|
[58] |
Gusynin V P and Sharapov S G 2005 Phys. Rev. Lett. 95 146801
|
[59] |
McCann E and Fal'ko V I 2006 Phys. Rev. Lett. 96 086805
|
[60] |
Li J, Martin I, Büttiker M and Morpurgo A F 2011 Nat. Phys. 7 38
|
[61] |
Chen J C, Yeung T C A and Sun Q F 2010 Phys. Rev. B 81 245417
|
[62] |
Chen J C, Zhang H, Shen S Q and Sun Q F 2011 J. Phys.: Condens. Matter 23 495301
|
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
Altmetric
|
blogs
Facebook pages
Wikipedia page
Google+ users
|
Online attention
Altmetric calculates a score based on the online attention an article receives. Each coloured thread in the circle represents a different type of online attention. The number in the centre is the Altmetric score. Social media and mainstream news media are the main sources that calculate the score. Reference managers such as Mendeley are also tracked but do not contribute to the score. Older articles often score higher because they have had more time to get noticed. To account for this, Altmetric has included the context data for other articles of a similar age.
View more on Altmetrics
|
|
|