© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Quantum mechanics dictates that a continuous measurement of the position of an object imposes a random quantum back-Action (QBA) perturbation on its momentum. This randomness translates with time into position uncertainty, thus leading to the well known uncertainty on the measurement of motion. As a consequence of this randomness, and in accordance with the Heisenberg uncertainty principle, the QBA puts a limitation-the so-called standard quantum limit-on the precision of sensing of position, velocity and acceleration. Here we show that QBA on a macroscopic mechanical oscillator can be evaded if the measurement of motion is conducted in the reference frame of...
The monitoring of a quantum-mechanical harmonic oscillator on which a classical force acts is import...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
We study theoretically the dynamics of a hybrid optomechanical system consisting of a macroscopic me...
Measurement-induced back-action, a direct consequence of the Heisenberg uncertainty principle, is th...
A common knowledge suggests that trajectories of particles in quantum mechanics always have quantum ...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
When carrying out ultrasensitive continuous measurements of position, one must ultimately confront t...
We study theoretically the dynamics of a hybrid optomechanical system consisting of a macroscopic me...
Standard Quantum Limit (SQL) of a classical mechanical force detection results from quantum back act...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
The standard quantum limit constrains the precision of an oscillator position measurement. It arises...
Quantum fluctuations of the light field used for continuous position detection produces stochastic b...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
The monitoring of a quantum-mechanical harmonic oscillator on which a classical force acts is import...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
We study theoretically the dynamics of a hybrid optomechanical system consisting of a macroscopic me...
Measurement-induced back-action, a direct consequence of the Heisenberg uncertainty principle, is th...
A common knowledge suggests that trajectories of particles in quantum mechanics always have quantum ...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
When carrying out ultrasensitive continuous measurements of position, one must ultimately confront t...
We study theoretically the dynamics of a hybrid optomechanical system consisting of a macroscopic me...
Standard Quantum Limit (SQL) of a classical mechanical force detection results from quantum back act...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
The standard quantum limit constrains the precision of an oscillator position measurement. It arises...
Quantum fluctuations of the light field used for continuous position detection produces stochastic b...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
The monitoring of a quantum-mechanical harmonic oscillator on which a classical force acts is import...
Quantum mechanics is potentially advantageous for certain information-processing tasks, but its prob...
We study theoretically the dynamics of a hybrid optomechanical system consisting of a macroscopic me...