Linearized gravity produces a master equation extending the Diósi-Penrose collapse model to include rotational degrees of freedom and mixed contributions through gravitomagnetic coupling.
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Coulomb squeezing of two nanospheres' differential motional mode can bound the CSL parameter λ_CSL at levels comparable to X-ray tests and robust against colored-noise extensions.
Entanglement entropy cannot be converted one-to-one to thermodynamic entropy in two-degree-of-freedom systems via quantum state reduction, and correlated stochastic driving forces produce distinguishable thermodynamic signatures from environment-induced dephasing.
citing papers explorer
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A post-Newtonian Gravitational Collapse Model from Linearized Gravity
Linearized gravity produces a master equation extending the Diósi-Penrose collapse model to include rotational degrees of freedom and mixed contributions through gravitomagnetic coupling.
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Testing Spontaneous Collapse Models with Coulomb Mediated Squeezing
Coulomb squeezing of two nanospheres' differential motional mode can bound the CSL parameter λ_CSL at levels comparable to X-ray tests and robust against colored-noise extensions.
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Entropy from Entanglement in Quantum State Reduction
Entanglement entropy cannot be converted one-to-one to thermodynamic entropy in two-degree-of-freedom systems via quantum state reduction, and correlated stochastic driving forces produce distinguishable thermodynamic signatures from environment-induced dephasing.