Quantum mechanics is potentially advantageous for certain information-processing tasks, but its probabilistic nature and requirement of measurement backaction often limit the precision of conventional classical information-processing devices, such as sensors and atomic clocks. Here we show that, by engineering the dynamics of coupled quantum systems, it is possible to construct a subsystem that evades the measurement backaction of quantum mechanics, at all times of interest, and obeys any classical dynamics, linear or nonlinear, that we choose. We call such a system a quantum-mechanics-free subsystem (QMFS). All of the observables of a QMFS are quantum-nondemolition (QND) observables; moreover, they are dynamical QND observables, thus demol...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Engineered quantum systems can help us learn more about fundamental physics topics and quantum techn...
We propose a protocol for coherently transferring non-Gaussian quantum states from optical field to ...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
During the theoretical investigation of the ultimate sensitivity of gravitational wave detectors thr...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
| openaire: EC/H2020/732894/EU//HOTQuantum mechanics sets a limit for the precision of continuous me...
The current frontier of our understanding of the physical universe is dominated by quantum phenomena...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Engineered quantum systems can help us learn more about fundamental physics topics and quantum techn...
We propose a protocol for coherently transferring non-Gaussian quantum states from optical field to ...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
During the theoretical investigation of the ultimate sensitivity of gravitational wave detectors thr...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
By coupling a macroscopic mechanical oscillator to two microwave cavities, we simultaneously prepare...
| openaire: EC/H2020/732894/EU//HOTQuantum mechanics sets a limit for the precision of continuous me...
The current frontier of our understanding of the physical universe is dominated by quantum phenomena...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Quantum metrology utilizes entanglement to improve the sensitivity of measurements(1-3). To date, th...
Engineered quantum systems can help us learn more about fundamental physics topics and quantum techn...
We propose a protocol for coherently transferring non-Gaussian quantum states from optical field to ...