Shallow-Depth Variational Quantum Hypothesis Testing
ORAL
Abstract
The task of discriminating between two known quantum channels is a well known binary hypothesis testing task. We present a variational quantum algorithm with a parameterized state preparation and two-outcome positive operator valued measure (POVM) which defines the acceptance criteria for the hypothesis test. Both the state preparation and measurement are simultaneously optimized using success probability of single-shot discrimination as an objective function which can be calculated using localized measurements. Under constrained signal mode photon number quantum illumination we match the performance of known optimal 2-mode probes by simulating a bosonic circuit. Our results show that variational algorithms can prepare optimal states for binary hypothesis testing with resource constraints.
* S.V. acknowledges support from Government of India DST-QUEST grant number DST/ICPS/QuST/Theme-4/2019.
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Publication: https://arxiv.org/abs/2304.14708
Presenters
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Mahadevan Subramanian
The University of Chicago
Authors
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Mahadevan Subramanian
The University of Chicago
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Sai Vinjanampathy
Indian Institute of Technology Bombay