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Opto-mechanical tests of collapse models

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

The gap between the predictions of collapse models and those of standard quantum mechanics widens with the complexity of the involved systems. Addressing the way such gap scales with the mass or size of the system being investigated paves the way to testing the validity of the collapse theory and identify the values of the parameters that characterize it. Here, we review the recently proposed non-interferometric approach to the testing of collapse models, focusing on the opto-mechanical platform.

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2019 1

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representative citing papers

Black hole entropy from trace dynamics and non-commutative geometry

gr-qc · 2019-09-05 · reject · novelty 4.0

A speculative calculation that recovers black hole entropy by identifying the trace-dynamics partition function result with the Euclidean gravitational action, after several assumptions that make the microstate count cancel.

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  • Black hole entropy from trace dynamics and non-commutative geometry gr-qc · 2019-09-05 · reject · none · ref 6 · internal anchor

    A speculative calculation that recovers black hole entropy by identifying the trace-dynamics partition function result with the Euclidean gravitational action, after several assumptions that make the microstate count cancel.