Volume of the space of qubit-qubit channels and state transformations under random quantum channels

Author:

Lovas Attila1ORCID,Andai Attila1ORCID

Affiliation:

1. Department of Analysis, Budapest University of Technology and Economics, 1111 Budapest, Egry József Street 1., Building H, Hungary

Abstract

The simplest building blocks for quantum computations are the qubit-qubit quantum channels. In this paper, we analyze the structure of these channels via their Choi representation. The restriction of a quantum channel to the space of classical states (i.e. probability distributions) is called the underlying classical channel. The structure of quantum channels over a fixed classical channel is studied, the volume of the general and unital qubit channels with respect to the Lebesgue measure is computed and explicit formulas are presented for the distribution of the volume of quantum channels over given classical channels. We study the state transformation under uniformly random quantum channels. If one applies a uniformly random quantum channel (general or unital) to a given qubit state, the distribution of the resulted quantum states is presented.

Publisher

World Scientific Pub Co Pte Lt

Subject

Mathematical Physics,Statistical and Nonlinear Physics

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3. Generating random quantum channels;Journal of Mathematical Physics;2021-06-01

4. Geometry of symmetric and noninvertible Pauli channels;Physical Review A;2020-12-30

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