Biblio
The Schrödinger–Newton equation and its foundations." New Journal of Physics. 16.11 (2014): 115007.
"On the spontaneous emission of electromagnetic radiation in the CSL model." Annals of Physics. 340.1 (2014): 70-86.
"Spontaneous photon emission from a non-relativistic free charged particle in collapse models: A case study." Physics Letters A. 378.10 (2014): 761-765.
"On spontaneous photon emission in collapse models." Journal of Physics A: Mathematical and Theoretical. 46.24 (2013): 245304.
"Spontaneously Emitted X-rays: An Experimental Signature of the Dynamical Reduction Models." Foundations of Physics. 46.3 (2016): 263-268.
"Stochastic Schrödinger equations with general complex Gaussian noises." Physical Review A. 67.6 (2003).
"Stochastic unraveling of positive quantum dynamics." Physical Review A. 95206362.6 (2017).
"Testing continuous spontaneous localization with Fermi liquids." Physical Review D. 99.10 (2019).
"Testing the gravitational field generated by a quantum superposition." New Journal of Physics (2019).
"Testing the quantum superposition principle in the frequency domain." Physical Review A. 89.3 (2014).
"Towards Quantum Superpositions of a Mirror: An Exact Open Systems Analysis." Physical Review Letters. 94.3 (2005).
"Towards quantum superpositions of a mirror: an exact open systems analysis—calculational details." Journal of Physics A: Mathematical and General. 38.12 (2005): 2715-2727.
"The Trieste Lecture of John Stewart Bell." Journal of Physics A: Mathematical and Theoretical. 40.12 (2007): 2919.
"Tunneling properties of nonplanar molecules in a gas medium." Phys. Rev. A. 84 (2011): 062115.
"Underground test of gravity-related wave function collapse." Nature Physics (2020).
"Uniqueness of the Equation for Quantum State Vector Collapse." Physical Review Letters. 111.21 (2013).
"Unitary unraveling for the dissipative continuous spontaneous localization model: Application to optomechanical experiments." Phys. Rev. A. 98 (2018): 042109.
"Universal Quantum Computation in Globally Driven Rydberg Atom Arrays." Physical Review Letters. 131.17 (2023).
"Upper Bounds on Spontaneous Wave-Function Collapse Models Using Millikelvin-Cooled Nanocantilevers." Physical Review Letters. 116.9 (2016).
"X rays on quantum mechanics: Pauli Exclusion Principle and collapse models at test." Journal of Physics: Conference Series. 631 (2015): 012068.
"The X-ray machine for the examination of quantum mechanics." International Journal of Quantum Information. 14.04 (2016): 1640017.
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