ID: 2009.09208

The quantum Ising chain for beginners

September 19, 2020

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Hydrodynamics of quantum entropies in Ising chains with linear dissipation

September 4, 2021

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Vincenzo Alba, Federico Carollo
Statistical Mechanics
Quantum Gases
Strongly Correlated Electron...

We study the dynamics of quantum information and of quantum correlations after a quantum quench, in transverse field Ising chains subject to generic linear dissipation. As we show, in the hydrodynamic limit of long times, large system sizes, and weak dissipation, entropy-related quantities -- such as the von Neumann entropy, the R\'enyi entropies, and the associated mutual information -- admit a simple description within the so-called quasiparticle picture. Specifically, we a...

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Entanglement Hamiltonians of lattice models via the Bisognano-Wichmann theorem

July 3, 2018

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G. Giudici, T. Mendes-Santos, ... , Dalmonte M.
Statistical Mechanics
Quantum Gases
Strongly Correlated Electron...

The modular (or entanglement) Hamiltonian correspondent to the half-space-bipartition of a quantum state uniquely characterizes its entanglement properties. However, in the context of lattice models, its explicit form is analytically known only for the Ising chain and certain free theories in one-dimension. In this work, we provide a throughout investigation of entanglement Hamiltonians in lattice models obtained via the Bisognano-Wichmann theorem, which provides an explicit ...

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Confinement and Kink Entanglement Asymmetry on a Quantum Ising Chain

December 14, 2023

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Brian J. J. Khor, D. M. Kürkçüoglu, T. J. Hobbs, ... , Klich Israel
Statistical Mechanics
Strongly Correlated Electron...

In this work, we explore the interplay of confinement, string breaking and entanglement asymmetry on a 1D quantum Ising chain. We consider the evolution of an initial domain wall and show that, surprisingly, while the introduction of confinement through a longitudinal field typically suppresses entanglement, it can also serve to increase it beyond a bound set for free particles. Our model can be tuned to conserve the number of domain walls, which gives an opportunity to explo...

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Quantum phase transition in a transverse Ising chain with regularly varying parameters

December 23, 2004

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O. Derzhko, J. Richter, ... , Zaburannyi O.
Statistical Mechanics
Strongly Correlated Electron...

Using rigorous analytical analysis and exact numerical data for the spin-1/2 transverse Ising chain we discuss the effects of regular alternation of the Hamiltonian parameters on the quantum phase transition inherent in the model.

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Quantum quenches in the thermodynamic limit. II. Initial ground states

July 23, 2014

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Marcos Rigol
Statistical Mechanics

A numerical linked-cluster algorithm was recently introduced to study quantum quenches in the thermodynamic limit starting from thermal initial states [M. Rigol, Phys. Rev. Lett. 112, 170601 (2014)]. Here, we tailor that algorithm to quenches starting from ground states. In particular, we study quenches from the ground state of the antiferromagnetic Ising model to the XXZ chain. Our results for spin correlations are shown to be in excellent agreement with recent analytical ca...

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Entanglement in quantum field theory via wavelet representations

January 17, 2022

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Daniel J. George, Yuval R. Sanders, Mohsen Bagherimehrab, ... , Brennen Gavin K.
Quantum Physics

Quantum field theory (QFT) describes nature using continuous fields, but physical properties of QFT are usually revealed in terms of measurements of observables at a finite resolution. We describe a multiscale representation of a free scalar bosonic and Ising model fermionic QFTs using wavelets. Making use of the orthogonality and self similarity of the wavelet basis functions, we demonstrate some well known relations such as scale dependent subsystem entanglement entropy and...

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Excitations with projected entangled pair states using the corner transfer matrix method

January 8, 2020

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Boris Ponsioen, Philippe Corboz
Strongly Correlated Electron...

We present an extension of a framework for simulating single quasiparticle or collective excitations on top of strongly correlated quantum many-body ground states using infinite projected entangled pair states, a tensor network ansatz for two-dimensional wave functions in the thermodynamic limit. Our approach performs a systematic summation of locally perturbed states in order to obtain excited eigenstates localized in momentum space, using the corner transfer matrix method, ...

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Excited state entanglement in homogeneous fermionic chains

January 23, 2014

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F. Ares, J. G. Esteve, ... , Sánchez-Burillo E.
Statistical Mechanics
Mathematical Physics

We study the Renyi entanglement entropy of an interval in a periodic fermionic chain for a general eigenstate of a free, translational invariant Hamiltonian. In order to analytically compute the entropy we use two technical tools. The first one is used to reduce logarithmically the complexity of the problem and the second one to compute the R\'enyi entropy of the chosen subsystem. We introduce new strategies to perform the computations, derive new expressions for the entropy ...

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Liquid ground state, gap and excited states of a strongly correlated spin chain

October 9, 2011

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Igor Lesanovsky
Strongly Correlated Electron...

We present an exact solution of an experimentally realizable and strongly interacting one-dimensional spin system which is a limiting case of a quantum Ising model with long range interaction in a transverse and longitudinal field. Pronounced quantum fluctuations lead to a strongly correlated liquid ground state. For open boundary conditions the ground state manifold consists of four degenerate sectors whose quantum numbers are determined by the orientation of the edge spins....

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Relaxation of the order-parameter statistics in the Ising quantum chain

June 3, 2019

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Mario Collura
Statistical Mechanics

We study the out-of-equilibrium probability distribution function of the local order parameter in the transverse field Ising quantum chain. Starting from a fully polarised state, the relaxation of the ferromagnetic order is analysed: we obtain a full analytical description of the late-time stationary distribution by means of a remarkable relation to the partition function of a 3-states classical model. Accordingly, depending on the phase whereto the post-quench Hamiltonian be...

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