English

Quantum-enhanced sensing of spin-orbit coupling without fine tuning

Quantum Physics 2026-03-10 v3

Abstract

Spin-orbit coupling plays an important role in both fundamental physics and technological applications. Precise estimation of the spin-orbit coupling is necessary for accurate designing across various physical setups such as solid state devices and quantum hardware. Here, we exploit quantum features in a 1D quantum wire for estimating the Rashba spin-orbit coupling with enhanced sensitivity beyond the capability of classical probes. The Heisenberg limited enhanced precision is achieved across a wide range of parameters and does not require fine tuning. Such advantage is directly related to the gap-closing nature of the probe across the entire relevant range of parameters. This provides clear advantage over conventional criticality-based quantum sensors in which quantum enhanced sensitivity can only be achieved through fine-tuning around the phase transition point. We have demonstrated quantum enhanced sensitivity for both single particle and interacting many-body probes. In addition to extending our results to thermal states and the multi-parameter scenario, we have provided an measurement basis to perform close to the ultimate precision.

Keywords

Cite

@article{arxiv.2411.00598,
  title  = {Quantum-enhanced sensing of spin-orbit coupling without fine tuning},
  author = {Bin Yi and Abolfazl Bayat and Saubhik Sarkar},
  journal= {arXiv preprint arXiv:2411.00598},
  year   = {2026}
}

Comments

8 pages, 9 figures

R2 v1 2026-06-28T19:44:16.767Z