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Featured researches published by A. K. Bera.


Physical Review B | 2017

Spinon confinement in a quasi-one-dimensional anisotropic Heisenberg magnet

A. K. Bera; B. Lake; Fabian H. L. Essler; L. Vanderstraeten; Claudius Hubig; Ulrich Schollwöck; A. T. M. N. Islam; Astrid Schneidewind; D. L. Quintero-Castro

Confinement is a process by which particles with fractional quantum numbers bind together to form quasiparticles with integer quantum numbers. The constituent particles are confined by an attractive interaction whose strength increases with increasing particle separation and, as a consequence, individual particles are not found in isolation. This phenomenon is well known in particle physics where quarks are confined in baryons and mesons. An analogous phenomenon occurs in certain spatially anisotropic magnetic insulators. These can be thought of in terms of weakly coupled chains of spins S = 1/2, and a spin flip thus carries integer spin S = 1. The collective excitations in these systems, called spinons, turn out to carry fractional spin quantum number S = 1/2. Interestingly, at sufficiently low temperatures the weak coupling between chains can induce an attractive interaction between pairs of spinons that increases with their separation and thus leads to confinement. In this paper, we employ inelastic neutron scattering to investigate the spinon-confinement process in the quasi-one-dimensional, spin-1/2 antiferromagnet with Heisenberg-Ising (XXZ) anisotropy SrCo2V2O8. A wide temperature range both above and below the long-range ordering temperature T-N = 5.2 K is explored. Spinon excitations are observed above TN in quantitative agreement with established theory. Below T-N pairs of spinons are confined and two sequences of meson-like bound states with longitudinal and transverse polarizations are observed. Several theoretical approaches are used to explain the data. These are based on a description in terms of a one-dimensional, S = 1/2 XXZ antiferromagnetic spin chain, where the interchain couplings are modeled by an effective staggered magnetic mean field. A wide range of exchange anisotropies are investigated and the parameters specific to SrCo2V2O8 are identified. Recently developed theoretical technique based on tangent-space matrix product states gives a very complete description of the data and provides good agreement not only with the energies of the bound modes but also with their intensities. We also successfully explain the effect of temperature on the excitations including the experimentally observed thermally induced resonance between longitudinal modes below T-N and the transitions between thermally excited spinon states above T-N. In summary, our work establishes SrCo2V2O8 as a beautiful paradigm for spinon confinement in a quasi-one-dimensional quantum magnet and provides a comprehensive picture of this process.


Physical Review B | 2014

Magnetic correlations of the quasi-one-dimensional half-integer spin-chain antiferromagnets SrM2V2O8 (M =Co, Mn)

A. K. Bera; B. Lake; W. D. Stein; S. Zander

Magnetic correlations of two isostructural quasi-one-dimensional (1D) antiferromagnetic spin-chain compounds Sr


Physical Review B | 2015

Consequences of critical interchain couplings and anisotropy on a Haldane chain

A. K. Bera; B. Lake; A. T. M. N. Islam; O. Janson; H. Rosner; A. Schneidewind; J. T. Park; E. Wheeler; S. Zander

{M}_{2}


Physical Review B | 2013

Field-induced magnetic ordering and single-ion anisotropy in the quasi-one-dimensional Haldane chain compound SrNi2V2O8: A single-crystal investigation

A. K. Bera; B. Lake; A. T. M. N. Islam; B. Klemke; E. Faulhaber; J. M. Law

V


Nature | 2018

Experimental observation of Bethe strings

Zhe Wang; Jianda Wu; Wang Yang; A. K. Bera; Dmytro Kamenskyi; A. T. M. Nazmul Islam; Shenglong Xu; Joseph Matthew Law; Bella Lake; Congjun Wu; A. Loidl

{}_{2}


Physical Review B | 2013

Low-energy magnetic excitations in the quasi-one-dimensional spin-1 chain compound SrNi2V2O8

Zhe Wang; Matthias Schmidt; A. K. Bera; A. T. M. N. Islam; B. Lake; A. Loidl; J. Deisenhofer

O


Physical Review B | 2016

From confined spinons to emergent fermions: Observation of elementary magnetic excitations in a transverse-field Ising chain

Zhe Wang; Jhih-Sheng Wu; Shenglong Xu; Wang Yang; Congjun Wu; A. K. Bera; A. T. M. N. Islam; B. Lake; Dmytro Kamenskyi; P. Gogoi; H. Engelkamp; N. L. Wang; J. Deisenhofer; A. Loidl

{}_{8}


Physical Review B | 2015

Spinon confinement in the one-dimensional Ising-like antiferromagnet SrCo2V2O8

Zhe Wang; Michael Schmidt; A. K. Bera; A. T. M. N. Islam; B. Lake; A. Loidl; J. Deisenhofer

(M = Co, Mn) have been investigated by magnetization and powder neutron diffraction. Two different collinear antiferromagnetic (AFM) structures, characterized by the propagation vectors,


arXiv: Strongly Correlated Electrons | 2015

Deconfining spinon excitations of an XXZ quantum antiferromagnet in a transverse magnetic field

Zhe Wang; Jianda Wu; Shenglong Xu; Wang Yang; Congjun Wu; A. K. Bera; A. T. M. Nazmul Islam; Bella Lake; Dmytro Kamenskyi; P. Gogoi; H. Engelkamp; A. Loidl; J. Deisenhofer

k=


Physical Review B | 2015

Critical properties of coupled anisotropic Haldane spin chains in a magnetic field

A. K. Bera; B. Lake; A. T. M. N. Islam; A. Schneidewind

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B. Lake

Helmholtz-Zentrum Berlin

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A. Loidl

University of Augsburg

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Zhe Wang

University of Augsburg

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Congjun Wu

University of California

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Shenglong Xu

University of California

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Wang Yang

University of California

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Dmytro Kamenskyi

Radboud University Nijmegen

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