Collective purification of interacting quantum networks beyond symmetry constraints

Fuente: arXiv
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Main Authors: Sur, Saikat, Chattopadhyay, Pritam, Chakrabarti, Arnab, Palaiodimopoulos, Nikolaos E., Müstecaplıoğlu, Özgur E., Finkler, Amit, Dasari, Durga Bhaktavatsala Rao, Kurizki, Gershon
Format: Preprint
Published: 2026
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author Sur, Saikat
Chattopadhyay, Pritam
Chakrabarti, Arnab
Palaiodimopoulos, Nikolaos E.
Müstecaplıoğlu, Özgur E.
Finkler, Amit
Dasari, Durga Bhaktavatsala Rao
Kurizki, Gershon
author_facet Sur, Saikat
Chattopadhyay, Pritam
Chakrabarti, Arnab
Palaiodimopoulos, Nikolaos E.
Müstecaplıoğlu, Özgur E.
Finkler, Amit
Dasari, Durga Bhaktavatsala Rao
Kurizki, Gershon
contents Following any quantum information processing protocol, it is essential to reset a mixed state of a many-body interacting spin-network to the computational-zero pure state. This task is challenging, both theoretically and experimentally, because of the quantum correlations. There is currently no effective cooling strategy for both high and low temperatures in such networks. Here we put forth a universal cooling strategy for multi-spin interacting networks. The strategy is based on the collective coupling of the system to an ancilla spin that intermittently dumps part of its entropy into an ultracold bath. Yet this strategy should overcome the symmetry-imposed correlations that impede the cooling. To avoid the prohibitive complexity of computing the dynamics, we resort to graph analysis of the network. %To approach the desired state, We show that a unique choice of alternating, non-commuting system-ancilla interaction Hamiltonians exists that breaks the symmetry constraints and allows the network to approach the desired pure state. We illustrate this universal purification strategy in diverse experimental settings.
format Preprint
id arxiv_https___arxiv_org_abs_2603_03917
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Collective purification of interacting quantum networks beyond symmetry constraints
Sur, Saikat
Chattopadhyay, Pritam
Chakrabarti, Arnab
Palaiodimopoulos, Nikolaos E.
Müstecaplıoğlu, Özgur E.
Finkler, Amit
Dasari, Durga Bhaktavatsala Rao
Kurizki, Gershon
Quantum Physics
Following any quantum information processing protocol, it is essential to reset a mixed state of a many-body interacting spin-network to the computational-zero pure state. This task is challenging, both theoretically and experimentally, because of the quantum correlations. There is currently no effective cooling strategy for both high and low temperatures in such networks. Here we put forth a universal cooling strategy for multi-spin interacting networks. The strategy is based on the collective coupling of the system to an ancilla spin that intermittently dumps part of its entropy into an ultracold bath. Yet this strategy should overcome the symmetry-imposed correlations that impede the cooling. To avoid the prohibitive complexity of computing the dynamics, we resort to graph analysis of the network. %To approach the desired state, We show that a unique choice of alternating, non-commuting system-ancilla interaction Hamiltonians exists that breaks the symmetry constraints and allows the network to approach the desired pure state. We illustrate this universal purification strategy in diverse experimental settings.
title Collective purification of interacting quantum networks beyond symmetry constraints
topic Quantum Physics
url https://arxiv.org/abs/2603.03917