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Updated: Apr 6, 2026

Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
Published on: May 30, 2014
Speeding Up Quantum Measurement Using Space-Time Trade-Off
Christopher Corlett1,2, Ieva Čepaitė3, Andrew J Daley3,4
1University of Bristol, Quantum Engineering Centre for Doctoral Training, Tyndall Avenue, Bristol BS8 1FD, United Kingdom.
Abstract:
We present a scheme for speeding up quantum measurement. The scheme builds on previous protocols that entangle the system to be measured with ancillary systems. In the idealized situation of perfect entangling operations and no decoherence, it gives an exact space-time trade-off meaning the readout speed increases linearly with the number of ancilla. We verify this scheme is robust against experimental imperfections through numerical modeling of gate noise and readout errors, and under certain circumstances our scheme can even lead to better than linear improvement in the speed of measurement with the number of systems measured. This hardware-agnostic approach is broadly applicable to a range of quantum technology platforms and offers a route to accelerate midcircuit measurement as required for effective quantum error correction.
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