English

Quantum search in a non-Markovian environment

Quantum Physics 2023-03-27 v1

Abstract

This MS thesis explores the effects and origins of a 'noise with memory' in the dynamics of an open quantum system. The system considered here is a multi-qubit register performing the Grover's quantum search algorithm. We show that a Markovian-correlated noise can enhance the efficiency of the algorithm over a time correlation-less noise. We also analytically find the set of necessary and sufficient conditions for the algorithm's success probability to remain invariant with respect to the number of noisy sites in the register and point out that these conditions hold irrespective of the presence of time-correlations in the noise. We then investigate the origins of the type of noise considered. In this regard, a 'collisional model' is constructed that exactly reproduces the noisy evolution of the open system. Non-Markovianity in the system's evolution is then assessed using two well-known measures and they are shown to be non-coincident. Our model is then slightly modified to accommodate an elementary thermal bath. There we show that increasing the bath's temperature increases information drainage from the system.

Keywords

Cite

@article{arxiv.2303.14121,
  title  = {Quantum search in a non-Markovian environment},
  author = {Sheikh Parvez Mandal},
  journal= {arXiv preprint arXiv:2303.14121},
  year   = {2023}
}

Comments

MS thesis, IISER-Pune, April 2022. 55 pages, 21 figures. The thesis has some overlap with the arXiv:2112.02640 preprint authored along with Ahana Ghoshal, Chirag Srivastava and Ujjwal Sen. The thesis was completed under the supervision of Prof. Ujjwal Sen, Harish-Chandra Research Institute, India

R2 v1 2026-06-28T09:32:32.041Z