An ancillary Unruh-DeWitt detector mediates thermal information from an AdS spacetime to a protected probe qubit, enhancing non-Markovian quantum thermometric precision.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
years
2026 2representative citing papers
Gaussian black holes show larger thermodynamic differences than geodesic differences when studied in quadratic Ricci scalar gravity compared to Einstein gravity, with the modified theory favored for physical consistency.
citing papers explorer
-
Relativistic Quantum Thermometry in AdS Spacetime via Non-Markovian Temperature Sensing
An ancillary Unruh-DeWitt detector mediates thermal information from an AdS spacetime to a protected probe qubit, enhancing non-Markovian quantum thermometric precision.
-
Geodesics Structure and Thermodynamic Properties of Gaussian Black Hole in Quadratic Ricci Scaler Gravity
Gaussian black holes show larger thermodynamic differences than geodesic differences when studied in quadratic Ricci scalar gravity compared to Einstein gravity, with the modified theory favored for physical consistency.