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Bridging Relations between SVD in Tensor Networks and Common Matrix Operations in Quantum Information Theory

John. TM. Campbell

TL;DR

The connections between singular value decomposition and various tensor operations in the context of quantum state calculations and tensor networks are explored, providing insights into the underlying principles and applications of SVD and tensor operations in quantum physics and computational mathematics.

Abstract

This document explores the connections between singular value decomposition (SVD) and various tensor operations in the context of quantum state calculations and tensor networks. The relationships between SVD and quantities such as trace, trace distance, Frobenius norm, and fidelity are examined, highlighting their similarities and differences. The intuition behind these mathematical connections is explained, providing insights into the underlying principles and applications of SVD and tensor operations in quantum physics and computational mathematics

Bridging Relations between SVD in Tensor Networks and Common Matrix Operations in Quantum Information Theory

TL;DR

The connections between singular value decomposition and various tensor operations in the context of quantum state calculations and tensor networks are explored, providing insights into the underlying principles and applications of SVD and tensor operations in quantum physics and computational mathematics.

Abstract

This document explores the connections between singular value decomposition (SVD) and various tensor operations in the context of quantum state calculations and tensor networks. The relationships between SVD and quantities such as trace, trace distance, Frobenius norm, and fidelity are examined, highlighting their similarities and differences. The intuition behind these mathematical connections is explained, providing insights into the underlying principles and applications of SVD and tensor operations in quantum physics and computational mathematics
Paper Structure (7 sections, 2 equations, 1 figure, 1 table)

This paper contains 7 sections, 2 equations, 1 figure, 1 table.

Figures (1)

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