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Research PaperResearchia:202603.19016[Quantum Computing > Quantum Physics]

CaRBM: A Fixed-Depth Quantum Algorithm with Partial Correction for Thermal State Preparation

Omar Alsheikh

Abstract

We introduce the CaRBM algorithm for fixed-depth thermal state preparation. Our algorithm is based on thermal state purification and uses the Restricted Boltzmann Machine (RBM) block-encoding scheme to implement the imaginary-time propagator eβHe^{-βH}, which is implemented in the quantum circuit in a fixed-depth manner via Cartan decomposition. Our algorithm performs best at high temperatures, with the success probability of the block encoding decreasing as the temperature decreases. To increase the success probability, we have devised a correction scheme for the block-encoding that increases the temperature range our algorithm reliably probes. We demonstrate our algorithm by calculating the partition function zeros of the XXZ model and the phase diagram of the Gross-Neveu model, which is a model of strongly interacting relativistic fermions.


Source: arXiv:2603.17971v1 - http://arxiv.org/abs/2603.17971v1 PDF: https://arxiv.org/pdf/2603.17971v1 Original Link: http://arxiv.org/abs/2603.17971v1

Submission:3/19/2026
Comments:0 comments
Subjects:Quantum Physics; Quantum Computing
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arXiv: This paper is hosted on arXiv, an open-access repository
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