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quant-ph2026

Unifying quantum measurement constructions via a relative-entropy minimum change principle

Nana Liu, Mark M. Wilde

The minimum change principle provides an information-theoretic characterization of the Bayes reversal channel in classical probability theory and has recently been proposed as a fr…

quant-ph2026

Fermi-Dirac thermal measurements: A framework for quantum hypothesis testing and semidefinite optimization

Nana Liu, Mark M. Wilde

Quantum measurements are the means by which we recover messages encoded into quantum states. They are at the forefront of quantum hypothesis testing, wherein the goal is to perform…

quant-ph2026

Fundamental questions on robustness and accuracy for classical and quantum learning algorithms

Nana Liu

This chapter introduces and investigates some fundamental questions on the relationship between accuracy and robustness in both classical and quantum classification algorithms unde…

quant-ph2025

Constrained free energy minimization for the design of thermal states and stabilizer thermodynamic systems

Michele Minervini, Madison Chin, Jacob Kupperman +6

A quantum thermodynamic system is described by a Hamiltonian and a list of conserved, non-commuting charges, and a fundamental goal is to determine the minimum energy of the system…

quant-ph2025

Quantum thermodynamics and semi-definite optimization

Nana Liu, Michele Minervini, Dhrumil Patel +1

In quantum thermodynamics, a system is described by a Hamiltonian and a list of non-commuting charges representing conserved quantities like particle number or electric charge, and…

quant-ph2025

The Quantum Internet (Technical Version)

Peter P. Rohde, Zixin Huang, Yingkai Ouyang +14

Following the emergence of quantum computing, the subsequent quantum revolution will be that of interconnecting individual quantum computers at global level. In the same way that c…