Lattice regularization of Rindler QFT shows the Unruh effect survives operationally for distant observables even though exact thermality is lost at the state level, with wave packets reflected at a stretched horizon of order the cutoff.
Quantum simulation of Hawking radiation and curved spacetime with a superconducting on-chip black hole
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Open-quantum-systems analysis of dissipative dc-SQUID and SNAIL transmission-line analogues of Schwarzschild black holes yields detectability thresholds showing Hawking temperatures above 73 mK remain observable, with the tunable line reaching 113 mK.
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Rindler Physics with a UV Cutoff on the Lattice
Lattice regularization of Rindler QFT shows the Unruh effect survives operationally for distant observables even though exact thermality is lost at the state level, with wave packets reflected at a stretched horizon of order the cutoff.
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Dissipative Effects in Transmission Line Analogues of Hawking Radiation
Open-quantum-systems analysis of dissipative dc-SQUID and SNAIL transmission-line analogues of Schwarzschild black holes yields detectability thresholds showing Hawking temperatures above 73 mK remain observable, with the tunable line reaching 113 mK.