English

Exceptional points for parameter estimation in open quantum systems: Analysis of the Bloch equations

Quantum Physics 2015-12-11 v5 Atomic Physics Optics

Abstract

We suggest to employ the dissipative nature of open quantum systems for the purpose of parameter estimation: The dynamics of open quantum systems is typically described by a quantum dynamical semigroup generator L{\cal L}. The eigenvalues of L{\cal L} are complex, reflecting unitary as well as dissipative dynamics. For certain values of parameters defining L{\cal L}, non-hermitian degeneracies emerge, i.e. exceptional points (EPEP). The dynamical signature of these EPEPs corresponds to a unique time evolution. This unique feature can be employed experimentally to locate the EPEPs and thereby to determine the intrinsic system parameters with a high accuracy. This way we turn the disadvantage of the dissipation into an advantage. We demonstrate this method in the open system dynamics of a two-level system described by the Bloch equation, which has become the paradigm of diverse fields in physics, from NMR to quantum information and elementary particles.

Keywords

Cite

@article{arxiv.1411.6364,
  title  = {Exceptional points for parameter estimation in open quantum systems: Analysis of the Bloch equations},
  author = {Morag Am-Shallem and Ronnie Kosloff and Nimrod Moiseyev},
  journal= {arXiv preprint arXiv:1411.6364},
  year   = {2015}
}

Comments

12 pages, 5 figures

R2 v1 2026-06-22T07:09:29.385Z