Decoherence-free mechanism to protect long-range entanglement against decoherence
Leela Ganesh Chandra Lakkaraju, Srijon Ghosh, Aditi Sen De

TL;DR
This paper demonstrates a decoherence-free mechanism to preserve long-range entanglement in quantum spin models with variable-range interactions, even under environmental noise, by exploiting entanglement freezing phenomena.
Contribution
It introduces a method to protect long-range entanglement through entanglement freezing, applicable to systems with exponential and polynomial interaction decay.
Findings
Long-range entanglement can be generated during dynamics with specific initial conditions.
Entanglement freezing occurs when parts of the system are protected from environment interactions.
A critical interaction length maximizes the freezing duration for a given entanglement range.
Abstract
Quantum spin models with variable-range interactions can exhibit certain quantum characteristics that a short-ranged model cannot possess. By considering the quantum XYZ model whose interaction strength between different sites varies either exponentially or polynomially, we report the creation of long-range entanglement in dynamics both in the absence and presence of system-bath interactions. Specifically, during closed dynamics, we determine a parameter regime from which the system should start its evolution so that the resulting state after quench can produce a high time-averaged entanglement having low fluctuations. Both in the exponential and power-law decays, it occurs when the magnetic field is weak and the interactions in the z-direction are nonvanishing. When part of the system interacts with the bath repeatedly or is attached to a collection of harmonic oscillators along with…
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Taxonomy
TopicsQuantum many-body systems · Quantum and electron transport phenomena · Neural Networks and Reservoir Computing
