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20232025
most citedOperational Interpretation of the Choi Rank Through k-State Exclusion

7 citations · 19 across the 6 of their papers we have counts for

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7 papers

quant-ph2025

Unspeakable Coherence Concentration

Benjamin Stratton, Chung-Yun Hsieh, Paul Skrzypczyk

Unspeakable coherence is a key feature separating quantum and classical physics. Modelled as asymmetry with respect to a continuous transformation generated by a physically relevan…

quant-ph2025★ 6 cited

Dynamical Landauer principle: Thermodynamic criteria of transmitting classical information

Chung-Yun Hsieh

Transmitting energy and information are two essential aspects of nature. Recent findings suggest they are closely related, while a quantitative equivalence between them is still un…

quant-ph2024★ 3 cited

Informational non-equilibrium concentration

Chung-Yun Hsieh, Benjamin Stratton, Hao-Cheng Weng +1

Informational contributions to thermodynamics can be studied in isolation by considering systems with fully-degenerate Hamiltonians. In this regime, being in non-equilibrium -- ter…

quant-ph2024

Dynamical resource theory of incompatibility preservability

Chung-Yun Hsieh, Benjamin Stratton, Chao-Hsien Wu +1

The uncertainty principle is one of quantum theory's most foundational features. It underpins a quantum phenomenon called measurement incompatibility -- two physical observables of…

quant-ph2024★ 7 cited

Operational Interpretation of the Choi Rank Through k-State Exclusion

Benjamin Stratton, Chung-Yun Hsieh, Paul Skrzypczyk

The Choi-state is an indispensable tool in the study and analysis of quantum channels. Considering a channel in terms of its associated Choi-state can greatly simplify problems. It…

quant-ph2024

Thermodynamic Approach to Quantifying Incompatible Instruments

Chung-Yun Hsieh, Shin-Liang Chen

We consider a thermodynamic framework to quantify instrument incompatibility via a resource theory subject to thermodynamic constraints. We use the minimal thermalisation time need…