Sep 12–13, 2024
Perimeter Institute for Theoretical Physics
America/Toronto timezone

Channel Expressivity Measures

Sep 12, 2024, 12:00 p.m.
20m
PI/3-394 - Skyroom (Perimeter Institute for Theoretical Physics)

PI/3-394 - Skyroom

Perimeter Institute for Theoretical Physics

60
15 minute talk (PhD Students)

Speaker

Matthew Duschenes (Perimeter Institute)

Description

The dynamics of closed quantum systems undergoing unitary processes has been well studied, leading to notions of measures for the expressive power of parameterized quantum circuits, relative to the unique, maximally expressive, average behaviour of ensembles of unitaries. Such unitary expressivity measures have further been linked to concentration phenomena known as barren plateaus. However, existing quantum hardware are not isolated from their noisy environment, and such non-unitary dynamics must therefore be described by more general trace-preserving operations. To account for hardware noise, we propose several, non-unique measures of expressivity for quantum channels and study their properties, highlighting how average non-unitary channels differ from average unitary channels. In the limit of large composite system and environments, average noisy quantum channels are shown to be maximally globally depolarizing, with next-leading-order non-unital perturbative behaviour. Furthermore, we rigorously prove that highly-expressive parameterized quantum channels will suffer from barren plateaus, thus generalizing explanations of noise-induced phenomena. This work is based on forthcoming work with Diego Martin, Zoe Holmes, and Marco Cerezo, in affiliation with Los Alamos National Laboratory.

Keywords Quantum Information, Quantum Channels, Noise-Induced Phenomena, Variational Quantum Algorithms
Submitter's Email Address [email protected]
Recording Permission YES
Virtual Audience Permission YES
Photography Permission YES

Primary author

Matthew Duschenes (Perimeter Institute)

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External references