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Publications

Twist defects and projective non-Abelian braiding statistics

Cornell Affiliated Author(s)
Author
Maissam Barkeshli
Chao-Ming Jian
Xiao-Liang Qi
Abstract

It has recently been realized that a general class of non-Abelian defects can be created in conventional topological states by introducing extrinsic defects, such as lattice dislocations or superconductor-ferromagnet domain walls in conventional quantum Hall states or topological insulators. In this paper, we begin by placing these defects within the broader conceptual scheme of extrinsic twist defects associated with symmetries of the topological state.

Journal
Physical Review B - Condensed Matter and Materials Physics
Date Published
Group (Lab)
Chao-Ming Jian Group

Synthetic non-Abelian statistics by Abelian anyon condensation

Cornell Affiliated Author(s)
Author
Yi-Zhuang You
Chao-Ming Jian
Xiao-Gang Wen
Abstract

Topological degeneracy is the degeneracy of the ground states in a many-body system in the large-system-size limit. Topological degeneracy cannot be lifted by any local perturbation of the Hamiltonian. The topological degeneracies on closed manifolds have been used to discover/define topological order in many-body systems, which contain excitations with fractional statistics. In this paper, we study a new type of topological degeneracy induced by condensing anyons along a line in two-dimensional topological ordered states.

Journal
Physical Review B - Condensed Matter and Materials Physics
Date Published
Group (Lab)
Chao-Ming Jian Group

Paired superfluidity and fractionalized vortices in systems of spin-orbit coupled bosons

Cornell Affiliated Author(s)
Author
Chao-Ming Jian
Hui Zhai
Abstract

In this Rapid Communication we study finite-temperature properties of spin-1/2 interacting bosons with spin-orbit coupling in two dimensions. When the ground state has stripe order, we show that thermal fluctuations will first melt the stripe order and lead to a superfluid of boson pairs if the spin-orbit coupling is isotropic or nearly isotropic. Such a phase supports fractionalized quantum vortices. The Kosterlitz-Thouless transition from superfluid to normal state is driven by proliferation of half vortices.

Journal
Physical Review B - Condensed Matter and Materials Physics
Date Published
Group (Lab)
Chao-Ming Jian Group

Spin-orbit coupled spinor Bose-Einstein condensates

Cornell Affiliated Author(s)
Author
Chunji Wang
Chao Gao
Chao-Ming Jian
Hui Zhai
Abstract

An effective spin-orbit coupling can be generated in a cold atom system by engineering atom-light interactions. In this Letter we study spin-1/2 and spin-1 Bose-Einstein condensates with Rashba spin-orbit coupling, and find that the condensate wave function will develop nontrivial structures. From numerical simulation we have identified two different phases. In one phase the ground state is a single plane wave, and often we find the system splits into domains and an array of vortices plays the role of a domain wall. In this phase, time-reversal symmetry is broken.

Journal
Physical Review Letters
Date Published
Group (Lab)
Chao-Ming Jian Group

Degeneracy of many-body quantum states in an optical lattice under a uniform magnetic field

Cornell Affiliated Author(s)
Author
J. Zhang
C.-M. Jian
F. Ye
H. Zhai
Abstract

We prove a theorem that shows the degeneracy of many-body states for particles in a periodic lattice and under a uniform magnetic field depends on the total particle number and the flux filling ratio. Noninteracting fermions and weakly interacting bosons are given as two examples. For the latter case, the phenomenon can also be physically understood in terms of destructive quantum interference of multiple symmetry-related tunneling paths between classical energy minima, which is reminiscent of the spin-parity effect discovered in magnetic molecular clusters.

Journal
Physical Review Letters
Date Published
Group (Lab)
Chao-Ming Jian Group