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quant-ph2026

Phase information transfer by post-selection in Spin--Mechanical assisted magnetometry

Raúl Coto, Hugo Molinares, Vitalie Eremeev

Quantum information transfer between light-matter-type systems is poised to enable important applications, while also serving as a testbed for theoretical investigation. Such syste…

quant-ph2026

Squeezed Phonon Lasing via Floquet-Controlled Solid-State Defects

Hugo Molinares, Gianluca Rastelli, Victor Montenegro +1

We propose a general Floquet-engineered scheme for squeezed phonon lasing that enables a continuous crossover from conventional phase-diffused phonon lasing to phase-locked squeeze…

quant-ph2026

Scalable phonon-laser arrays with self-organized synchronization

Hugo Molinares, Guillermo Romero, Victor Montenegro +1

Quantum mechanical oscillators operating at frequencies up to the GHz regime have been predicted to support phonon lasing -- self-sustained coherent vibrational motion emerging whe…

quant-ph2024

Simultaneous photon and phonon lasing in a two-tone driven optomechanical system

Vitalie Eremeev, Hugo Molinares, Luis A. Correa +1

Achieving simultaneous lasing of photons and phonons in optomechanical setups has great potential for applications in quantum information processing, high precision sensing and the…

quant-ph2023

Generation of phonon quantum states and quantum correlations among single photon emitters in hexagonal boron nitride

Hugo Molinares, Fernanda Pinilla, Enrique Muñoz +2

Hexagonal boron nitride exhibits two types of defects with great potential for quantum information technologies: single-photon emitters (SPEs) and one-dimensional grain boundaries…