Electronic properties of mesoscopic graphene structures: Charge confinement and control of spin and charge transport
暂无分享,去创建一个
[1] Dirac gap-induced graphene quantum dot in an electrostatic potential , 2011, 1102.3488.
[2] M. I. Katsnelson,et al. Gaps tunable by electrostatic gates in strained graphene , 2010, 1012.0939.
[3] Mark S. Lundstrom,et al. Gate-controlled guiding of electrons in graphene. , 2010, Nature nanotechnology.
[4] S. Sarma,et al. Electronic transport in two-dimensional graphene , 2010, 1003.4731.
[5] F. Nori,et al. Natural and artificial atoms for quantum computation , 2010, 1002.1871.
[6] F. Nori,et al. Graphene quantum dots formed by a spatial modulation of the Dirac gap , 2010, 1102.1042.
[7] F. Guinea,et al. Gaps tunable by gates in strained graphene , 2010 .
[8] X. Gong,et al. Thermodynamically Stable Single-Side Hydrogenated Graphene , 2010 .
[9] A. Zettl,et al. Strain-Induced Pseudo–Magnetic Fields Greater Than 300 Tesla in Graphene Nanobubbles , 2010, Science.
[10] M. Yamamoto,et al. Proposal for a magnetic field induced graphene dot , 2010, 1007.4093.
[11] J. Robinson,et al. Properties of fluorinated graphene films. , 2010, Nano letters.
[12] P. Park,et al. Electronic properties of a graphene antidot in magnetic fields , 2010, Journal of physics. Condensed matter : an Institute of Physics journal.
[13] V. Kravets,et al. Fluorographene: a two-dimensional counterpart of Teflon. , 2010, Small.
[14] E. Mucciolo,et al. Disorder and electronic transport in graphene , 2010, Journal of physics. Condensed matter : an Institute of Physics journal.
[15] Marc Dubois,et al. Electron properties of fluorinated single-layer graphene transistors , 2010, 1005.3474.
[16] B. Yakobson,et al. Vacancy clusters in graphane as quantum dots. , 2010, ACS nano.
[17] Yu Huang,et al. Top-gated graphene nanoribbon transistors with ultrathin high-k dielectrics. , 2010, Nano letters.
[18] K. Zou,et al. Reversible fluorination of graphene: Evidence of a two-dimensional wide bandgap semiconductor , 2010, 1005.0113.
[19] A. Neto,et al. Geometry, mechanics, and electronics of singular structures and wrinkles in graphene. , 2010, Physical review letters.
[20] D. Loss,et al. Tunable edge magnetism at graphene/graphane interfaces , 2010, 1004.4363.
[21] P. Recher,et al. Quantum dots and spin qubits in graphene , 2010, Nanotechnology.
[22] O. Yazyev. Emergence of magnetism in graphene materials and nanostructures , 2010, 1004.2034.
[23] T. Ohta,et al. Extended van Hove singularity and superconducting instability in doped graphene. , 2010, Physical review letters.
[24] F. Guinea,et al. Robustness of edge states in graphene quantum dots , 2010, 1003.4602.
[25] Tapash Chakraborty,et al. Properties of graphene: a theoretical perspective , 2010, 1003.0391.
[26] Dirac spectrum in piecewise constant one-dimensional (1D) potentials , 2010, 1002.3655.
[27] C. Stampfer,et al. Spin states in graphene quantum dots. , 2010, Physical review letters.
[28] C. Dimitrakopoulos,et al. 100-GHz Transistors from Wafer-Scale Epitaxial Graphene , 2010, Science.
[29] Charles M Lieber,et al. Graphene and nanowire transistors for cellular interfaces and electrical recording. , 2010, Nano letters.
[30] P. Bogusławski,et al. Magnetism of solids resulting from spin polarization of p orbitals , 2010, Journal of physics. Condensed matter : an Institute of Physics journal.
[31] P. Maksym,et al. Electron confinement in single layer graphene quantum dots: Semiclassical approach , 2010 .
[32] H. Kurz,et al. Electrical observation of a tunable band gap in bilayer graphene nanoribbons at room temperature , 2010, 1001.5213.
[33] R. Kaner,et al. Honeycomb carbon: a review of graphene. , 2010, Chemical reviews.
[34] States near Dirac points of a rectangular graphene dot in a magnetic field , 2010, 1001.1201.
[35] Exact wave functions for an electron on a graphene triangular quantum dot , 2009, 0912.4160.
[36] M. Ezawa. Dirac fermions in a graphene nanodisk and a graphene corner: Texture of vortices with an unusual winding number , 2009, 0911.4548.
[37] M. Engelund,et al. Localized edge vibrations and edge reconstruction by joule heating in graphene nanostructures. , 2009, Physical review letters.
[38] V. Tozzini,et al. Electronic structure and Peierls instability in graphene nanoribbons sculpted in graphane , 2009, 0911.0060.
[39] D. Loss,et al. Edge states and enhanced spin-orbit interaction at graphene/graphane interfaces , 2009, 0910.5333.
[40] P. Hawrylak,et al. Zero-energy states in triangular and trapezoidal graphene structures , 2009, 0910.4121.
[41] F. Nori,et al. Tunable electronic transport and unidirectional quantum wires in graphene subjected to electric and magnetic fields , 2009, 0910.3106.
[42] D. Srolovitz,et al. First-principles study of graphene edge properties and flake shapes , 2009, 0909.4373.
[43] D. Goldhaber-Gordon,et al. Disorder-induced gap behavior in graphene nanoribbons , 2009, 0909.3886.
[44] F. Guinea,et al. Energy gaps and a zero-field quantum Hall effect in graphene by strain engineering , 2009, 0909.1787.
[45] S. Sarma,et al. Klein tunneling in disordered graphene p-n-p junctions , 2009, 0908.3674.
[46] K. Shintani,et al. Molecular dynamics study of energetics of graphene flakes , 2009 .
[47] M. Lazzeri,et al. The thermodynamic stability and simulated STM images of graphene nanoribbons , 2009 .
[48] L. A. Openov,et al. Spontaneous regeneration of an atomically sharp graphene/graphane interface under thermal disordering , 2009, 0911.0294.
[49] Vladimir A. Volkov,et al. Electron states near graphene edge , 2009 .
[50] F. Nori,et al. Quantum Simulators , 2009, Science.
[51] Vitor M. Pereira,et al. Magnetism in strained graphene dots , 2009, 0909.4799.
[52] A. K. Sarychev,et al. Superresolution and enhancement in metamaterials , 2009 .
[53] M. Chou,et al. Structural and electronic properties of oxidized graphene. , 2009, Physical review letters.
[54] G. A. Farias,et al. Electrostatically confined quantum rings in bilayer graphene. , 2009, Nano letters.
[55] K. Novoselov. Beyond the wonder material , 2009 .
[56] W. Bao,et al. Electrical transport in high-quality graphene pnp junctions , 2009, 0907.3366.
[57] A. H. Castro Neto,et al. Strain engineering of graphene's electronic structure. , 2009, Physical review letters.
[58] N. Peres. The transport properties of graphene , 2009, Journal of physics. Condensed matter : an Institute of Physics journal.
[59] SUPARNA DUTTASINHA,et al. Graphene: Status and Prospects , 2009, Science.
[60] T. Tang,et al. Direct observation of a widely tunable bandgap in bilayer graphene , 2009, Nature.
[61] P. Koskinen,et al. Evidence for graphene edges beyond zigzag and armchair , 2009, 0906.0688.
[62] R. Pollet,et al. Spin-Unrestricted Calculations of Bare-Edged Nanographenes Using DFT and Many-Body Perturbation Theory. , 2009, Journal of chemical theory and computation.
[63] Su-Huai Wei,et al. "Narrow" graphene nanoribbons made easier by partial hydrogenation. , 2009, Nano letters.
[64] C. Stampfer,et al. Transport through graphene double dots , 2009, 0905.0660.
[65] F. Peeters,et al. Quasibound states of Schrödinger and Dirac electrons in a magnetic quantum dot , 2009, 0907.3653.
[66] Valeria Russo,et al. Integrated complementary graphene inverter , 2009, 0904.2745.
[67] Yu Huang,et al. Rational fabrication of graphene nanoribbons using a nanowire etch mask. , 2009, Nano letters.
[68] A. Reina,et al. Controlled Formation of Sharp Zigzag and Armchair Edges in Graphitic Nanoribbons , 2009, Science.
[69] Steven G. Louie,et al. Graphene at the Edge: Stability and Dynamics , 2009, Science.
[70] B. Yakobson,et al. Electronics and magnetism of patterned graphene nanoroads. , 2009, Nano letters.
[71] V. Shenoy,et al. Edge elastic properties of defect-free single-layer graphene sheets , 2009 .
[72] J. Lyding,et al. The influence of edge structure on the electronic properties of graphene quantum dots and nanoribbons. , 2009, Nature materials.
[73] J. Bardarson,et al. Electrostatic confinement of electrons in an integrable graphene quantum dot. , 2009, Physical review letters.
[74] D. Basko. Boundary problems for Dirac electrons and edge-assisted Raman scattering in graphene , 2009, 0902.4345.
[75] S. Roche,et al. Anomalous doping effects on charge transport in graphene nanoribbons. , 2009, Physical review letters.
[76] S. Dutta,et al. Intrinsic half-metallicity in modified graphene nanoribbons. , 2009, Physical review letters.
[77] Vladimir A. Volkov,et al. Electrons near a graphene edge , 2009 .
[78] J. Brink,et al. First-principles study of the interaction and charge transfer between graphene and metals , 2009, 0902.1203.
[79] Tapash Chakraborty,et al. Tunable band gap and magnetic ordering by adsorption of molecules on graphene , 2009, 0901.4956.
[80] D. Stroud,et al. Tunable band gap in graphene with a noncentrosymmetric superlattice potential , 2009, 0901.4780.
[81] E. Bekyarova,et al. Chemical modification of epitaxial graphene: spontaneous grafting of aryl groups. , 2009, Journal of the American Chemical Society.
[82] L. Vandersypen,et al. Electrostatic confinement of electrons in graphene nanoribbons , 2008, 0812.4038.
[83] N. Marzari,et al. Uniaxial Strain in Graphene by Raman Spectroscopy: G peak splitting, Gruneisen Parameters and Sample Orientation , 2008, 0812.1538.
[84] N. M. R. Peres,et al. Tight-binding approach to uniaxial strain in graphene , 2008, 0811.4396.
[85] K. Wakabayashi,et al. Hamiltonian decomposition for bulk and surface states. , 2008, Physical review letters.
[86] G. Tkachov. Dirac fermion quantization on graphene edges : Isospin-orbit coupling, zero modes, and spontaneous valley polarization , 2008, 0811.2698.
[87] C. Stampfer,et al. Transport gap in side-gated graphene constrictions , 2008, 0811.0676.
[88] C. Stampfer,et al. Energy gaps in etched graphene nanoribbons. , 2008, Physical review letters.
[89] D. Goldhaber-Gordon,et al. Quantum dot behavior in graphene nanoconstrictions. , 2008, Nano letters.
[90] K. Novoselov,et al. Control of Graphene's Properties by Reversible Hydrogenation: Evidence for Graphane , 2008, Science.
[91] D. Goldhaber-Gordon,et al. Contact resistance and shot noise in graphene transistors , 2008, 0810.4568.
[92] L. Dell'Anna,et al. Multiple magnetic barriers in graphene , 2008, 0810.1236.
[93] S. Savel'ev,et al. Transport and localization in periodic and disordered graphene superlattices , 2008, 0810.0926.
[94] J. Nilsson,et al. Bound states and magnetic field-induced valley splitting in gate-tunable graphene quantum dots , 2008, 0810.0419.
[95] S. Savel'ev,et al. Electronic properties of armchair graphene nanoribbons , 2008, 0808.1636.
[96] P. Kim,et al. Quantum interference and Klein tunnelling in graphene heterojunctions , 2008, Nature Physics.
[97] Eduardo R. Mucciolo,et al. Conductance quantization and transport gaps in disordered graphene nanoribbons , 2008, 0806.3777.
[98] Sankalpa Ghosh,et al. Electron optics with magnetic vector potential barriers in graphene , 2008, Journal of physics. Condensed matter : an Institute of Physics journal.
[99] D. Goldhaber-Gordon,et al. Evidence for Klein tunneling in graphene p-n junctions. , 2008, Physical review letters.
[100] P. Maksym,et al. Magnetic field induced confinement–deconfinement transition in graphene quantum dots , 2008, Journal of physics. Condensed matter : an Institute of Physics journal.
[101] F. Guinea,et al. The electronic properties of graphene , 2007, Reviews of Modern Physics.
[102] V. Apalkov,et al. Interplay between valley polarization and electron-electron interaction in a graphene ring , 2008 .
[103] Ying Ying Wang,et al. Uniaxial strain on graphene: Raman spectroscopy study and band-gap opening. , 2008, ACS nano.
[104] S. Roche,et al. Charge transport in disordered graphene-based low dimensional materials , 2008, 0809.4630.
[105] M. Manninen,et al. Electronic structure of triangular, hexagonal and round graphene flakes near the Fermi level , 2008, 0809.4162.
[106] C. Stampfer,et al. Charge detection in graphene quantum dots , 2008, 0809.3904.
[107] Yisong Zheng,et al. Dirac equation description of the electronic states and magnetic properties of a square graphene quantum dot , 2008, Nanotechnology.
[108] N. Peres,et al. Inducing energy gaps in monolayer and bilayer graphene: Local density approximation calculations , 2008 .
[109] Francesco Mauri,et al. Structure, stability, edge states, and aromaticity of graphene ribbons. , 2008, Physical review letters.
[110] Xu Du,et al. Approaching ballistic transport in suspended graphene. , 2008, Nature nanotechnology.
[111] F. Peeters,et al. Direction-dependent tunneling through nanostructured magnetic barriers in graphene , 2008 .
[112] V. Apalkov,et al. Electron localization in graphene quantum dots , 2008 .
[113] C. Stampfer,et al. Tunable graphene single electron transistor. , 2008, Nano letters.
[114] I. Zozoulenko,et al. Edge-disorder-induced Anderson localization and conduction gap in graphene nanoribbons , 2008, 0805.4326.
[115] A. Geim,et al. Nonvolatile Switching in Graphene Field-Effect Devices , 2008, IEEE Electron Device Letters.
[116] P. Kim,et al. Temperature-dependent transport in suspended graphene. , 2008, Physical review letters.
[117] Francisco Guinea,et al. Conductance of p-n-p graphene structures with "air-bridge" top gates. , 2008, Nano letters.
[118] D. Goldhaber-Gordon,et al. Evidence of the role of contacts on the observed electron-hole asymmetry in graphene , 2008, 0804.2040.
[119] M. Manninen,et al. Edge-dependent selection rules in magic triangular graphene flakes , 2008, 0804.0918.
[120] S. Bhowmick,et al. Edge state magnetism of single layer graphene nanostructures. , 2008, The Journal of chemical physics.
[121] D. Hirashima,et al. Local Magnetic Moment Formation on Edges of Graphene(Condensed matter: electronic structure and electrical, magnetic, and optical properties) , 2008 .
[122] H. Dai,et al. Room-temperature all-semiconducting sub-10-nm graphene nanoribbon field-effect transistors. , 2008, Physical review letters.
[123] C. T. White,et al. Tight-binding energy dispersions of armchair-edge graphene nanostrips , 2008 .
[124] F. Guinea,et al. Interactions and magnetism in graphene boundary states. , 2008, Physical review letters.
[125] H. Dai,et al. Chemically Derived, Ultrasmooth Graphene Nanoribbon Semiconductors , 2008, Science.
[126] Sunghun Park,et al. Magnetic edge states in graphene in nonuniform magnetic fields , 2008, 0802.4360.
[127] Pekka Koskinen,et al. Self-passivating edge reconstructions of graphene. , 2008, Physical review letters.
[128] J. Brink,et al. Doping graphene with metal contacts. , 2008, Physical review letters.
[129] Lieven M. K. Vandersypen,et al. Observation of Aharonov-Bohm conductance oscillations in a graphene ring , 2008 .
[130] J. Cserti,et al. Theory of snake states in graphene , 2008 .
[131] R. Saito,et al. Magnetism as a Mass Term of the Edge States in Graphene(Condensed matter : electronic structure and electrical, magnetic, and optical properties) , 2008, 0801.4170.
[132] M. I. Katsnelson,et al. Chaotic Dirac Billiard in Graphene Quantum Dots , 2007, Science.
[133] C. Beenakker,et al. Theory of the valley-valve effect in graphene nanoribbons , 2007, 0712.3233.
[134] F. Peeters,et al. Quasibound states of quantum dots in single and bilayer graphene , 2007, 0711.4446.
[135] Gábor Csányi,et al. Edge-functionalized and substitutionally doped graphene nanoribbons: Electronic and spin properties , 2007, Physical Review B.
[136] M I Katsnelson,et al. Magnetic correlations at graphene edges: basis for novel spintronics devices. , 2007, Physical review letters.
[137] C. Beenakker. Andreev reflection and Klein tunneling in graphene , 2007, 0710.3848.
[138] Supriyo Datta,et al. Effect of contact induced states on minimum conductivity in graphene , 2007, 0710.2727.
[139] C. Beenakker,et al. Boundary conditions for Dirac fermions on a terminated honeycomb lattice , 2007, 0710.2723.
[140] G. Scuseria,et al. Half-metallic graphene nanodots: A comprehensive first-principles theoretical study , 2007, 0709.0938.
[141] Franco Nori,et al. Colloquium: Unusual resonators: Plasmonics, metamaterials, and random media , 2007, 0708.2653.
[142] R. Egger,et al. Conductance quantization and snake states in graphene magnetic waveguides , 2007, 0708.1876.
[143] M. Fogler,et al. Nonlinear screening and ballistic transport in a graphene p-n junction. , 2007, Physical review letters.
[144] K. Novoselov,et al. Molecular doping of graphene. , 2007, Nano letters.
[145] V. Yampol’skii,et al. Voltage-driven quantum oscillations in graphene , 2007, 0712.1407.
[146] R. Egger,et al. Magnetic barriers and confinement of Dirac–Weyl quasiparticles in graphene , 2007 .
[147] N. Sandler,et al. Electron-electron and spin-orbit interactions in armchair graphene ribbons. , 2007, Physical review letters.
[148] D. Novikov,et al. Effect Of Disorder On Graphene P-N Junction , 2007, 0710.2150.
[149] C. Stampfer,et al. Tunable Coulomb blockade in nanostructured graphene , 2007, 0709.3799.
[150] J. Mintmire,et al. Altering low-bias transport in zigzag-edge graphene nanostrips with edge chemistry , 2007 .
[151] A. V. Fedorov,et al. Substrate-induced bandgap opening in epitaxial graphene. , 2007, Nature materials.
[152] Jeroen van den Brink,et al. Substrate-induced band gap in graphene on hexagonal boron nitride: Ab initio density functional calculations , 2007 .
[153] L. DiCarlo,et al. Quantum Hall Effect in a Gate-Controlled p-n Junction of Graphene , 2007, Science.
[154] J. Palacios,et al. Magnetism in graphene nanoislands. , 2007, Physical review letters.
[155] M. Ezawa. Metallic graphene nanodisks: Electronic and magnetic properties , 2007, 0707.0349.
[156] Paweł Sałek,et al. Nonlocal exchange interaction removes half-metallicity in graphene nanoribbons. , 2007, Nano letters.
[157] J. Cserti,et al. Caustics due to a negative refractive index in circular graphene p-n junctions. , 2007, Physical review letters.
[158] C. Beenakker,et al. Aharonov-Bohm effect and broken valley degeneracy in graphene rings , 2007, 0706.2103.
[159] H. Schomerus,et al. Electronic transport in normal-conductor/graphene/normal-conductor junctions and conditions for insulating behavior at a finite charge-carrier density , 2007, 0706.1506.
[160] Cheol-Hwan Park,et al. Self-interaction in Green ’ s-function theory of the hydrogen atom , 2007 .
[161] F. Guinea,et al. Coulomb blockade in graphene nanoribbons. , 2007, Physical review letters.
[162] P. Kim,et al. Electronic transport and quantum hall effect in bipolar graphene p-n-p junctions. , 2007, Physical review letters.
[163] D. Goldhaber-Gordon,et al. Transport measurements across a tunable potential barrier in graphene. , 2007, Physical review letters.
[164] Juan E Peralta,et al. Enhanced half-metallicity in edge-oxidized zigzag graphene nanoribbons. , 2007, Nano letters.
[165] C. T. White,et al. Semiconducting graphene nanostrips with edge disorder , 2007 .
[166] Aachen,et al. A Graphene Field-Effect Device , 2007, IEEE Electron Device Letters.
[167] F M Peeters,et al. Tunable quantum dots in bilayer graphene. , 2007, Nano letters.
[168] Vladimir Fal'ko,et al. The Focusing of Electron Flow and a Veselago Lens in Graphene p-n Junctions , 2007, Science.
[169] C. N. Lau,et al. Phase-Coherent Transport in Graphene Quantum Billiards , 2007, Science.
[170] S. Louie,et al. Half-metallic graphene nanoribbons , 2007, Nature.
[171] Andre K. Geim,et al. The rise of graphene. , 2007, Nature materials.
[172] P. Kim,et al. Energy band-gap engineering of graphene nanoribbons. , 2007, Physical review letters.
[173] A. V. Kats,et al. Left-handed interfaces for electromagnetic surface waves. , 2007, Physical review letters.
[174] J. Mintmire,et al. Hidden one-electron interactions in carbon nanotubes revealed in graphene nanostrips. , 2007, Nano letters.
[175] Scott S. Verbridge,et al. Electromechanical Resonators from Graphene Sheets , 2007, Science.
[176] M. Rooks,et al. Graphene nano-ribbon electronics , 2007, cond-mat/0701599.
[177] K. Efetov,et al. Quantum dots in graphene. , 2007, Physical review letters.
[178] Y. Blanter,et al. Transport through normal-metal-graphene contacts , 2006, cond-mat/0612577.
[179] T. Chakraborty,et al. Fock-Darwin states of dirac electrons in graphene-based artificial atoms. , 2006, Physical review letters.
[180] F. Guinea,et al. Biased bilayer graphene: semiconductor with a gap tunable by the electric field effect. , 2006, Physical review letters.
[181] N. Harrison,et al. Electronic structure and magnetic properties of graphitic ribbons , 2006, cond-mat/0611344.
[182] G. Burkard,et al. Spin qubits in graphene quantum dots , 2006, cond-mat/0611252.
[183] M. Titov. Impurity-assisted tunneling in graphene , 2006, cond-mat/0611029.
[184] Magnetic confinement of massless Dirac fermions in graphene. , 2006, Physical review letters.
[185] G. Barber,et al. Graphane: a two-dimensional hydrocarbon , 2006, cond-mat/0606704.
[186] 齋藤 理一郎. Local density of states at zigzag edges of carbon nanotubes and graphene , 2007 .
[187] C. T. White,et al. Ballistic transport in graphene nanostrips in the presence of disorder: importance of edge effects. , 2007, Nano letters.
[188] Oded Hod,et al. Electronic structure and stability of semiconducting graphene nanoribbons. , 2006, Nano letters.
[189] S. Louie,et al. Energy gaps in graphene nanoribbons. , 2006, Physical review letters.
[190] T. Ohta,et al. Controlling the Electronic Structure of Bilayer Graphene , 2006, Science.
[191] C. Beenakker,et al. Sub-Poissonian shot noise in graphene. , 2006, Physical review letters.
[192] M. I. Katsnelson,et al. Chiral tunnelling and the Klein paradox in graphene , 2006 .
[193] V. Fal’ko,et al. Selective transmission of Dirac electrons and ballistic magnetoresistance of n − p junctions in graphene , 2006, cond-mat/0603624.
[194] L. Brey,et al. Electronic states of graphene nanoribbons studied with the Dirac equation , 2006, cond-mat/0603107.
[195] S. Murakami,et al. Gauge Field for Edge State in Graphene , 2006, cond-mat/0602647.
[196] M. Tsukada,et al. Scanning tunneling microscopy and spectroscopy of the electronic local density of states of graphite surfaces near monoatomic step edges , 2006, cond-mat/0601141.
[197] F. Guinea,et al. Conductance quantization in mesoscopic graphene , 2005, cond-mat/0512476.
[198] F. Guinea,et al. Electronic properties of disordered two-dimensional carbon , 2005, cond-mat/0512091.
[199] S. Murakami,et al. Stabilization mechanism of edge states in graphene , 2005, cond-mat/0508442.
[200] Yousuke Kobayashi,et al. Observation of zigzag and armchair edges of graphite using scanning tunneling microscopy and spectroscopy , 2005 .
[201] P. McEuen,et al. Coulomb oscillations and Hall effect in quasi-2D graphite quantum dots. , 2005, Nano letters.
[202] Andre K. Geim,et al. Electric Field Effect in Atomically Thin Carbon Films , 2004, Science.
[203] A. Lagarkov,et al. Near-perfect imaging in a focusing system based on a left-handed-material plate. , 2004, Physical review letters.
[204] V. Fal’ko,et al. Symmetry of boundary conditions of the Dirac equation for electrons in carbon nanotubes , 2004, cond-mat/0402373.
[205] Yoshiyuki Kawazoe,et al. Cluster expansion method for adsorption: Application to hydrogen chemisorption on graphene , 2003 .
[206] K. Kusakabe,et al. Magnetic nanographite , 2002, cond-mat/0212391.
[207] M. Manninen,et al. Electronic structure of quantum dots , 2002 .
[208] S. Tarucha,et al. Electron transport through double quantum dots , 2002, cond-mat/0205350.
[209] J. Pendry,et al. Negative refraction makes a perfect lens , 2000, Physical review letters.
[210] K. Kusakabe,et al. Magnetism of nanometer-scale graphite with edge or topological defects , 1997 .
[211] K. Nakada,et al. Lattice Distortion in Nanographite Ribbons , 1997 .
[212] Fujita,et al. Edge state in graphene ribbons: Nanometer size effect and edge shape dependence. , 1996, Physical review. B, Condensed matter.
[213] K. Kusakabe,et al. Peculiar Localized State at Zigzag Graphite Edge , 1996 .
[214] D. Klein. Graphitic polymer strips with edge states , 1994 .
[215] Müller. Effect of a nonuniform magnetic field on a two-dimensional electron gas in the ballistic regime. , 1992, Physical review letters.
[216] P. Rennert,et al. Many‐particle Physics , 1982 .
[217] E. Clar. The aromatic sextet , 1972 .
[218] V. Veselago. The Electrodynamics of Substances with Simultaneously Negative Values of ∊ and μ , 1968 .
[219] E. Clar,et al. Polycyclic Hydrocarbons , 1964, Springer Berlin Heidelberg.
[220] Physics Reports , 2022 .