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Spin-orbit coupling (SOC) can provide essential tools to manipulate electron spins in two-dimensional materials like graphene, which is of great interest for both fundamental physics and spintronics application. In this paper, we report the…

Mesoscale and Nanoscale Physics · Physics 2021-10-12 Shimin Cao , Chuanwu Cao , Shibing Tian , Jian-Hao Chen

This note contains my response to the comment written by J. Franklin on my paper ``Covariant formulation of electrodynamics in isotropic media''.

Classical Physics · Physics 2024-01-09 Palash B. Pal

We reply on the comment of D. Belitz and T. R. Kirkpatrick on our article ``Instability of the ferromagnetic quantum critical point and symmetry of the ferromagnetic ground state in 2D and 3D electron gases with arbitrary spin-orbit…

Strongly Correlated Electrons · Physics 2026-03-10 Dmitry Miserev , Daniel Loss , Jelena Klinovaja

In reply to the Comment by Ramasubramaniam regarding our article [Phys. Rev. B {\bf 81}, 241412(R) (2010)] we clarify that our results are indeed valid provided that out-of-plane atomic relaxations are inhibited, as it may occur in the…

Mesoscale and Nanoscale Physics · Physics 2010-08-09 Giulio Cocco , Emiliano Cadelano , Luciano Colombo

Comment on X.-L. Wang et al., Phys. Rev. Lett. 105, 253602 (2010).

We report on the emergence of laser-induced chiral edge states in graphene ribbons. Insights on the nature of these Floquet states is provided by an analytical solution which is complemented with numerical simulations of the transport…

Mesoscale and Nanoscale Physics · Physics 2014-03-06 P. M. Perez-Piskunow , Gonzalo Usaj , C. A. Balseiro , L. E. F. Foa Torres

It has been shown recently [J. L. Lado et al., Phys. Rev. Lett. 113, 027203 (2014)] that edge magnetic moments in graphene-like nanoribbons are strongly influenced by the intrinsic spin-orbit interaction. Due to this interaction an…

Mesoscale and Nanoscale Physics · Physics 2017-08-23 I. Weymann , J. Barnas , S. Krompiewski

This article is a reply to the Comment by D. Spemann et al (arXiv:1204.2992) in response to our paper 'Revealing common artifacts due to ferromagnetic inclusions in highly oriented pyrolytic graphite' (EPL, 97 (2012) 47001).

Mesoscale and Nanoscale Physics · Physics 2012-06-21 M. Sepioni , R. R. Nair , I. -Ling Tsai , A. K. Geim , I. V. Grigorieva

In this comment we show that some equations and results of the paper titled "Dielectric screening and plasmons in AA-stacked bilayer graphene" are not correct. Furthermore, we present our results which seems to be more correct.

Mesoscale and Nanoscale Physics · Physics 2014-10-20 Yawar Mohammadi

This is a comment on arXiv:1402.6767 (2014) by Y. Imura, T. Okubo, S. Morita, and K. Okunishi.

Statistical Mechanics · Physics 2016-07-19 Hiroaki Matsueda , Ching Hua Lee , Yoichiro Hashizume

This is a Comment on Phys.Rev.Lett. 100, 017001 (2008).

Superconductivity · Physics 2013-05-29 Ryusuke Ikeda

This paper replies the comments by J. D. Jackson [Am. J. Phys. 75, 844-845 (2007)] and V. Hnizdo [Am. J. Phys. 75, 845-846 (2007)].

Classical Physics · Physics 2008-12-31 Jose A. Heras

Reply to Comment by Flenner and Szamel on our paper in Nature Physics 8, 164 (2012).

Disordered Systems and Neural Networks · Physics 2013-09-09 Walter Kob , Sandalo Roldan-Vargas , Ludovic Berthier

Comment on "Liquids on Topologically Nanopatterned Surfaces" by O. Gang et al, Phys. Rev. Lett. 95, 217801 (2005). See also an erratum published by O. Gang et al (Phys Rev Lett, to appear)

Statistical Mechanics · Physics 2009-11-13 C. Rascon

This comment clarifies the relation of the research in a recently published article [Phys. Plasmas 14, 042503 (2007)] to other prior publications addressing the inclusion of electromagnetic and drift-kinetic electron physics in gyrokinetic…

Plasma Physics · Physics 2011-11-10 Bruce I. Cohen , Andris M. Dimits , William M. Nevins

We review recent advances on the theory of spin qubits in nanostructures. We focus on four selected topics. First, we show how to form spin qubits in the new and promising material graphene. Afterwards, we discuss spin relaxation and…

Mesoscale and Nanoscale Physics · Physics 2008-08-29 B. Trauzettel , M. Borhani , M. Trif , D. Loss

Kane and Mele predicted that in presence of spin-orbit interaction graphene realizes the quantum spin Hall state. However, exceptionally weak intrinsic spin-orbit splitting in graphene ($\approx 10^{-5}$ eV) inhibits experimental…

Mesoscale and Nanoscale Physics · Physics 2013-06-18 Gabriel Autès , Oleg V. Yazyev

This is a comment on [G. Knight and R. Klages, Phys. Rev. E 84, 041135 (2011); also available at arXiv:1107.5293v2 [math-ph]].

Statistical Mechanics · Physics 2011-11-29 Thomas Gilbert , David P. Sanders

First-principles calculations of the spin-orbit coupling in graphene with hydrogen adatoms in dense and dilute limits are presented. The chemisorbed hydrogen induces a giant local enhancement of spin-orbit coupling due to $sp^3$…

Mesoscale and Nanoscale Physics · Physics 2013-06-18 Martin Gmitra , Denis Kochan , Jaroslav Fabian

Arising from the Article: Nature Phys. 2, 620-625 (2006), By M. I. Katsnelson, K. S. Novoselov, and A. K. Geim.

Mesoscale and Nanoscale Physics · Physics 2010-10-14 M. Ahsan Zeb