26 July 2026 to 1 August 2026
University of Maryland, College Park
US/Eastern timezone

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

29 Jul 2026, 09:40
20m
Margaret Brent A (Adele H. Stamp Student Union)

Margaret Brent A

Adele H. Stamp Student Union

3972 Campus Dr, College Park, MD 20742
Contributed talk Quantum computing and quantum information Quantum computing and quantum information

Speaker

Omar Alsheikh

Description

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 $e^{-\beta H}$, 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.

Authors

Evan Rule Goksu Toga (North Carolina State University) Lex Kemper (NC State) Omar Alsheikh Dr ermal rrapaj

Presentation materials