We present exact solutions for the quantum time evolution of two spatially separated, local inductor-capacitor (LC) oscillators that are coupled optomechanically to a long elastic strip that functions as a quantum thermal acoustic field environment. We show that the optomechanical coupling to the acoustic environment gives rise to causal entanglement dynamics between the two LC oscillators in the absence of resonant photon exchange between them, and that significant entanglement develops regardless of the environment temperature. Such a process establishes that distributed entanglement may be generated between superconducting qubits via a connected phonon bus bar, without the need for resonant phonon release and capture.Comment: 6+4 pages, ...
The role of entanglement in determining the non-classicality of a given interaction has gained signi...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
Motivated by entanglement protection, our work utilizes a resonance effect to enhance optomechanical...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Quantum entanglement has been actively sought in optomechanical and electromechanical systems. The s...
Although superconducting systems provide a promising platform for quantum computing, their networkin...
In this work we study various aspects of the quantum dynamics for a system coupled to a Bosonic envi...
Phonons, the quanta of vibrations, are very important for the equilibrium and dynamical properties o...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Semiconductor microresonators embedding quantum wells can host tightly confined and mutually interac...
We show that the interaction of a pulsed laser light with a mechanical oscillator through the radiat...
Quantum information can be stored in micromechanical resonators, encoded as quanta of vibration know...
We investigate a general scheme for generating, either dynamically or in the steady state, continuou...
The role of entanglement in determining the non-classicality of a given interaction has gained signi...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
Motivated by entanglement protection, our work utilizes a resonance effect to enhance optomechanical...
Precisely engineered mechanical oscillators keep time, filter signals, and sense motion, making them...
Quantum entanglement has been actively sought in optomechanical and electromechanical systems. The s...
Although superconducting systems provide a promising platform for quantum computing, their networkin...
In this work we study various aspects of the quantum dynamics for a system coupled to a Bosonic envi...
Phonons, the quanta of vibrations, are very important for the equilibrium and dynamical properties o...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Semiconductor microresonators embedding quantum wells can host tightly confined and mutually interac...
We show that the interaction of a pulsed laser light with a mechanical oscillator through the radiat...
Quantum information can be stored in micromechanical resonators, encoded as quanta of vibration know...
We investigate a general scheme for generating, either dynamically or in the steady state, continuou...
The role of entanglement in determining the non-classicality of a given interaction has gained signi...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave...