The development of quantum technologies present important challenges such as the need for fast and precise protocols for implementing quantum operations. Shortcuts to adiabaticity (STA) are a powerful tool for achieving these goals, as they enable us to perform an exactly adiabatic evolution in finite time. In this paper we present a shortcut to adiabaticity for the control of an optomechanical cavity with two moving mirrors. Given reference trajectories for the mirrors, we find analytical expressions that give us effective trajectories which implement a STA for the quantum field inside the cavity. We then solve these equations numerically for different reference protocols, such as expansions, contractions and rigid motions; thus confirming...
Adiabatic processes in quantum mechanics are very useful to prepare and manipulate quantum states bu...
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an o...
We propose a scheme to fast controlled preparation of two-atom maximally entangled state a...
Shortcuts to adiabaticity constitute a powerful alternative that speed up time-evolution while mimic...
Shortcuts to adiabaticity constitute a powerful alternative that speed up time evolution while mimic...
Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of t...
We propose how to engineer the longitudinal coupling to accelerate the measurement of a qubit longit...
A major barrier for the development of new quantum technologies is fast and robust methods for prepa...
A shortcut to adiabaticity (STA) is concerned with the fast and robust manipulation of the dynamics ...
Exploring quantum physics in macroscopic systems and manipulating these systems for various technolo...
Adiabatic invariants -- quantities that are preserved under the slow driving of a system's external ...
In recent years, the concept of shortcuts to adiabaticity (STA), originally developed for speeding u...
Understanding heat transfer between a quantum system and its environment is of undisputed importance...
We show how to prepare a variety of cavity field states for multiple cavities. The state preparation...
8 pags., 5 figs.The quantum perceptron is a fundamental building block for quantum machine learning....
Adiabatic processes in quantum mechanics are very useful to prepare and manipulate quantum states bu...
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an o...
We propose a scheme to fast controlled preparation of two-atom maximally entangled state a...
Shortcuts to adiabaticity constitute a powerful alternative that speed up time-evolution while mimic...
Shortcuts to adiabaticity constitute a powerful alternative that speed up time evolution while mimic...
Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of t...
We propose how to engineer the longitudinal coupling to accelerate the measurement of a qubit longit...
A major barrier for the development of new quantum technologies is fast and robust methods for prepa...
A shortcut to adiabaticity (STA) is concerned with the fast and robust manipulation of the dynamics ...
Exploring quantum physics in macroscopic systems and manipulating these systems for various technolo...
Adiabatic invariants -- quantities that are preserved under the slow driving of a system's external ...
In recent years, the concept of shortcuts to adiabaticity (STA), originally developed for speeding u...
Understanding heat transfer between a quantum system and its environment is of undisputed importance...
We show how to prepare a variety of cavity field states for multiple cavities. The state preparation...
8 pags., 5 figs.The quantum perceptron is a fundamental building block for quantum machine learning....
Adiabatic processes in quantum mechanics are very useful to prepare and manipulate quantum states bu...
The ability to prepare a macroscopic mechanical resonator into a quantum superposition state is an o...
We propose a scheme to fast controlled preparation of two-atom maximally entangled state a...