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20172026
most citedGravitational Decoherence

201 citations · 276 across the 7 of their papers we have counts for

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10 papers · 1 filter

quant-ph2026

Maximizing Nonclassicality of Massive Objects via Quantum Zeno Effect

Debarshi Das, Pritam Roy, Marko Toroš +3

For testing quantum mechanics in the macroscopic domain, a major challenge is to devise effective means for enhancing the observable nonclassical signatures despite the ubiquitous…

quant-ph20251 cited

A Spin-Based Pathway to Testing the Quantum Nature of Gravity

Sougato Bose, Anupam Mazumdar, Roger Penrose +52

A key open problem in physics is the correct way to combine gravity (described by general relativity) with everything else (described by quantum mechanics). This problem suggests t…

quant-ph2025

Enhancement of the effects due to the Schrödinger-Newton equation

Davide Giordano Ario Altamura, José Luis Gaona-Reyes, Elliot Simcox +2

The Schrödinger-Newton (SN) equation introduces a nonlinear self-gravitational term to the standard Schrödinger equation, offering a paradigmatic model for semiclassical gravity. H…

quant-ph2025

Measuring Decoherence Due to Quantum Vacuum Fluctuations

Anirudh Gundhi, Hendrik Ulbricht

The interaction of a particle with vacuum fluctuations--which theoretically exist even in the complete absence of matter--can lead to observable irreversible decoherence if it were…

quant-ph2024

Squeezing below the ground state of motion of a continuously monitored levitating nanoparticle

Qiongyuan Wu, Diana A. Chisholm, Rafael Muffato +5

Squeezing is a crucial resource for quantum information processing and quantum sensing. In levitated nanomechanics, squeezed states of motion can be generated via temporal control…

quant-ph2024

Generation of classical non-Gaussian distributions by squeezing a thermal state into non-linear motion of levitated optomechanics

Rafael Muffato, Tiberius Georgescu, Jack Homans +6

We report on an experiment achieving the dynamical generation of non-Gaussian states of motion of a levitated optomechanical system. We access intrinsic Duffing-like nonlinearities…