<?xml version="1.0" encoding="UTF-8"?><xml><records><record><source-app name="Biblio" version="6.x">Drupal-Biblio</source-app><ref-type>17</ref-type><contributors><authors><author><style face="normal" font="default" size="100%">Lee, C. M.</style></author><author><style face="normal" font="default" size="100%">Lee, R. C. H.</style></author><author><style face="normal" font="default" size="100%">Ruan, W. Y.</style></author><author><style face="normal" font="default" size="100%">Chou, M. Y.</style></author><author><style face="normal" font="default" size="100%">Vyas, A.</style></author></authors></contributors><titles><title><style face="normal" font="default" size="100%">Magnetic-field dependence of low-lying spectra in bilayer graphene-based magnetic dots and rings</style></title><secondary-title><style face="normal" font="default" size="100%">Solid State Communications</style></secondary-title></titles><keywords><keyword><style  face="normal" font="default" size="100%">BILAYER GRAPHENE</style></keyword><keyword><style  face="normal" font="default" size="100%">edge states</style></keyword><keyword><style  face="normal" font="default" size="100%">electronic-properties</style></keyword><keyword><style  face="normal" font="default" size="100%">Magnetic dot</style></keyword><keyword><style  face="normal" font="default" size="100%">Magnetic ring</style></keyword><keyword><style  face="normal" font="default" size="100%">PHYSICS</style></keyword></keywords><dates><year><style  face="normal" font="default" size="100%">2013</style></year><pub-dates><date><style  face="normal" font="default" size="100%">Mar</style></date></pub-dates></dates><urls><web-urls><url><style face="normal" font="default" size="100%">&lt;Go to ISI&gt;://WOS:000315551800012</style></url></web-urls></urls><volume><style face="normal" font="default" size="100%">156</style></volume><pages><style face="normal" font="default" size="100%">49-53</style></pages><isbn><style face="normal" font="default" size="100%">0038-1098</style></isbn><language><style face="normal" font="default" size="100%">English</style></language><abstract><style face="normal" font="default" size="100%">&lt;p&gt;The low-lying energy spectra of bilayer graphene in a perpendicular magnetic field B(r)(z) over cap were obtained by numerical diagonalization of the Hamiltonian. We assumed that B(r) takes on the shape of a circular dot or a ring. Under such a nonuniform field, the lowest-energy Landau levels, with N- = 0,1, remain invariant with a zero eigenvalue. For other Landau levels, complicated level-splitting and level-crossings take place when the effective radius of the dot or ring increases. (C) 2012 Elsevier Ltd. All rights reserved.&lt;/p&gt;
</style></abstract><work-type><style face="normal" font="default" size="100%">Article</style></work-type><accession-num><style face="normal" font="default" size="100%">WOS:000315551800012</style></accession-num><notes><style face="normal" font="default" size="100%">&lt;p&gt;ISI Document Delivery No.: 098LWTimes Cited: 0Cited Reference Count: 23Cited References:      Abergel DSL, 2010, ADV PHYS, V59, P261, DOI 10.1080/00018732.2010.487978     Barbier M, 2009, PHYS REV B, V79, DOI 10.1103/PhysRevB.79.155402     Beenakker CWJ, 2008, REV MOD PHYS, V80, P1337, DOI 10.1103/RevModPhys.80.1337     Castro Neto AH, 2009, REV MOD PHYS, V81, P109, DOI 10.1103/RevModPhys.81.109     De Martino A, 2007, PHYS REV LETT, V98, DOI 10.1103/PhysRevLett.98.066802     De Martino A, 2010, SEMICOND SCI TECH, V25, DOI 10.1088/0268-1242/25/3/034006     De Martino A, 2007, SOLID STATE COMMUN, V144, P547, DOI 10.1016/j.ssc.2007.03.062     Goerbig MO, 2011, REV MOD PHYS, V83, P1193, DOI 10.1103/RevModPhys.83.1193     Kim N, 1999, PHYS REV B, V60, P8767, DOI 10.1103/PhysRevB.60.8767     Kormanyos A, 2008, PHYS REV B, V78, DOI 10.1103/PhysRevB.78.045430     Lee CM, 2010, APPL PHYS LETT, V96, DOI 10.1063/1.3435478     Lee CM, 2010, J PHYS-CONDENS MAT, V22, DOI 10.1088/0953-8984/22/35/355501     Lee SJ, 2004, PHYS REP, V394, P1, DOI 10.1016/j.physrep.2003.11.004     Masir MR, 2011, PHYS REV B, V84, DOI 10.1103/PhysRevB.84.245413     McCann E., 2007, PHYS REV LETT, V96     Novoselov KS, 2005, NATURE, V438, P197, DOI 10.1038/nature04233     Novoselov KS, 2006, NAT PHYS, V2, P177, DOI 10.1038/nphys245     Novoselov KS, 2004, SCIENCE, V306, P666, DOI 10.1126/science.1102896     Masir MR, 2009, PHYS REV B, V79, DOI 10.1103/PhysRevB.79.155451     Masir MR, 2011, J PHYS-CONDENS MAT, V23, DOI 10.1088/0953-8984/23/31/315301     Sim HS, 1998, PHYS REV LETT, V80, P1501, DOI 10.1103/PhysRevLett.80.1501     Yang N, 2012, J PHYS-CONDENS MAT, V24, DOI 10.1088/0953-8984/24/21/215303     Zazunov A, 2010, PHYS REV B, V82, DOI 10.1103/PhysRevB.82.155431Lee, C. M. Lee, Richard C. H. Ruan, W. Y. Chou, M. Y. Vyas, A.Chou, Mei-Yin/D-3898-2012U.S. Department of Energy [DE-FG02-97ER45632]This work is supported by the U.S. Department of Energy Grant No. DE-FG02-97ER45632.Pergamon-elsevier science ltdOxford&lt;/p&gt;
</style></notes><auth-address><style face="normal" font="default" size="100%">Newtech Comp HK Ltd, Unit P, Hunghom, Hong Kong, Peoples R China. Georgia Inst Technol, Sch Phys, Atlanta, GA 30332 USA. Hong Kong Polytech Univ, Dept Mech Engn, Kowloon, Hong Kong, Peoples R China.Lee, CM (reprint author), Newtech Comp HK Ltd, Unit P, 6-F Kaiser Estate,Phase 3,11 Hok Yuen St, Hunghom, Hong Kong, Peoples R China.mesimon_hk@yahoo.com.hk</style></auth-address></record></records></xml>