9 citations · 12 across the 5 of their papers we have counts for
6 papers · 1 filter
No-go theorems on simulating uncertainty principle's signatures
Chung-Yun Hsieh, Minjeong Song, Shin-Liang Chen
Uncertainty principle, one of the most iconic features of quantum mechanics, was originally viewed as a fundamental limitation. Since the inception of quantum information science,…
Universal method for optimized robustness in self-testing of quantum resources
Shin-Liang Chen, Nikolai Miklin
Self-testing is a phenomenon where the use of specific quantum states or measurements can be inferred solely from the correlations they generate. We introduce a universal method fo…
Investigating an approach of robustly self-testing two-qubit entangled states
Chan-Ching Lien, Shin-Liang Chen
In a recent paper [Quantum 5, 552 (2021)], the authors proposed a framework for robustly self-testing steerable quantum assemblages. In this work, we apply their method to the scen…
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…
Device-independent certification of desirable properties with a confidence interval
Wan-Guan Chang, Kai-Chun Chen, Kai-Siang Chen +2
In the development of quantum technologies, a reliable means for characterizing quantum devices is crucial. However, the conventional approach based on, e.g., quantum state tomogra…
Complete classification of steerability under local filters and its relation with measurement incompatibility
Huan-Yu Ku, Chung-Yun Hsieh, Shin-Liang Chen +2
Quantum steering is the central resource for one-sided device-independent quantum information. It is manipulated via one-way local operations and classical communication, such as l…