Nb3Sn films on Cu via Cu-Sn diffusion achieve Q=77,000 at zero field in a test cavity, outperforming bare Cu for potential axion searches.
Nonlinear nature of gravitation and gravitational wave experiments
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Robinson-Trautman waves exhibit an explicit memory effect, with their news-free sector matching boosted rescaled Schwarzschild black holes and the vacuum sector of Euclidean Liouville theory.
A method strengthens Mermin-Klyshko-Bell inequalities beyond local bounds for entanglement detection in multipartite systems using coarsely calibrated measurements and derives trade-offs for separable versus general states.
Bayesian parameter estimation on simulated LISA data establishes conditions for detecting displacement memory in MBHB events and projects observation rates from population models.
citing papers explorer
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Nb$_3$Sn Thin Films Using a Cu-Sn Route for Dark Matter Detection
Nb3Sn films on Cu via Cu-Sn diffusion achieve Q=77,000 at zero field in a test cavity, outperforming bare Cu for potential axion searches.
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Memory of Robinson-Trautman waves
Robinson-Trautman waves exhibit an explicit memory effect, with their news-free sector matching boosted rescaled Schwarzschild black holes and the vacuum sector of Euclidean Liouville theory.
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Entanglement Detection Beyond Local Bound with Coarse Calibrated measurements
A method strengthens Mermin-Klyshko-Bell inequalities beyond local bounds for entanglement detection in multipartite systems using coarsely calibrated measurements and derives trade-offs for separable versus general states.
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Detectability of Gravitational-Wave Memory with LISA: A Bayesian Approach
Bayesian parameter estimation on simulated LISA data establishes conditions for detecting displacement memory in MBHB events and projects observation rates from population models.