Logo image
Supraclassical measurement using single-atom control of an atomic ensemble
Journal article   Peer reviewed

Supraclassical measurement using single-atom control of an atomic ensemble

Calum MacCormick, Silvia Bergamini, Chris Mansell, Hugo Cable and Kavan Modi
Physical review. A, Vol.93(2), 023805
03/02/2016

Abstract

Optics Physical Sciences Physics Physics, Atomic, Molecular & Chemical Science & Technology
We analyze the operation of a sensor based on atom interferometry, which can achieve supraclassical sensitivity by exploiting quantum correlations in mixed states of many qubits. The interferometer is based on quantum gates which use coherently controlled Rydberg interactions between a single atom (which acts as a control qubit) and an atomic ensemble (which provides register qubits). In principle, our scheme can achieve precision scaling with the size of the ensemble-which can extend to large numbers of atoms-while using only single-qubit operations on the control and bulk operations on the ensemble. We investigate realistic implementation of the interferometer, and our main aim is to develop an approach to quantum metrology that can achieve quantum-enhanced measurement precision by exploiting coherent operations on large impure quantum states. We propose an experiment to demonstrate the enhanced sensitivity of the protocol and to investigate a transition from classical to supraclassical sensitivity which occurs when using highly mixed probe states.
url
https://doi.org/10.1103/PhysRevA.93.023805View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image