English

Measurement-based deterministic imaginary time evolution

Quantum Physics 2023-09-06 v3

Abstract

We introduce a method to perform imaginary time evolution in a controllable quantum system using measurements and conditional unitary operations. By performing a sequence of weak measurements based on the desired Hamiltonian constructed by a Suzuki-Trotter decomposition, an evolution approximating imaginary time evolution can be realized. The randomness due to measurement is corrected using conditional unitary operations, making the evolution deterministic. Both the measurements required for the algorithm and the conditional unitary operations can be constructed efficiently. We show that the algorithm converges only below a specified energy threshold and the complexity is estimated for some specific problem instances.

Keywords

Cite

@article{arxiv.2202.09100,
  title  = {Measurement-based deterministic imaginary time evolution},
  author = {Yuping Mao and Manish Chaudhary and Manikandan Kondappan and Junheng Shi and Ebubechukwu O. Ilo-Okeke and Valentin Ivannikov and Tim Byrnes},
  journal= {arXiv preprint arXiv:2202.09100},
  year   = {2023}
}