Complete Parameterizations of Diffusive Quantum Monitorings
A. Chia, H. M. Wiseman

TL;DR
This paper introduces a unified framework for parameterizing diffusive quantum measurements, expanding beyond the existing U-rep to include the M-rep and B-rep, which offer different perspectives on measurement implementation.
Contribution
The authors develop a comprehensive set of parameterizations for diffusive quantum unravellings, including a new unified equation and measurement implementation models.
Findings
Unified description of diffusive unravellings via a single complex matrix equation.
Introduction of the M-rep with increased parameter redundancy.
Proposal of the B-rep for physical measurement implementation details.
Abstract
The master equation for the state of an open quantum system can be unravelled into stochastic trajectories described by a stochastic master equation. Such stochastic differential equations can be interpreted as an update formula for the system state conditioned on results obtained from monitoring the bath. So far only one parameterization (mathematical representation) for arbitrary diffusive unravellings (quantum trajectories arising from monitorings with Gaussian white noise) of a system described by a master equation with Lindblad terms has been found [H. M. Wiseman and A. C. Doherty, Phys. Rev. Lett. {\bf 94}, 070405 (2005)]. This parameterization, which we call the U-rep, parameterizes diffusive unravellings by real numbers, arranged in a matrix subject to three constraints. In this paper we investigate alternative parameterizations of diffusive measurements.…
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