Measurement-induced back-action, a direct consequence of the Heisenberg uncertainty principle, is the defining feature of quantum measurements. We use quantum measurement theory to analyze the recent experiment of Safavi-Naeini et al. [Phys. Rev. Lett. 108 033602 (2012)], and show that the results of this experiment not only characterize the zero-point fluctuation of a near-ground-state nanomechanical oscillator, but also demonstrate the existence of quantum back-action noise—through correlations that exist between sensing noise and back-action noise. These correlations arise from the quantum coherence between the mechanical oscillator and the measuring device, which build up during the measurement process, and are key to improving sensitiv...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Standard Quantum Limit (SQL) of a classical mechanical force detection results from quantum back act...
Under a strong quantum measurement, the motion of an oscillator is disturbed by the measurement bac...
Measurement-induced back-action, a direct consequence of the Heisenberg uncertainty principle, is th...
When carrying out ultrasensitive continuous measurements of position, one must ultimately confront t...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Quantum mechanics...
Quantum fluctuations of the light field used for continuous position detection produces stochastic b...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
Several high-precision physics experiments are approaching a level of sensitivity at which the intri...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
The monitoring of a quantum-mechanical harmonic oscillator on which a classical force acts is import...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
Under a strong quantum measurement, the motion of an oscillator is disturbed by the measurement back...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Standard Quantum Limit (SQL) of a classical mechanical force detection results from quantum back act...
Under a strong quantum measurement, the motion of an oscillator is disturbed by the measurement bac...
Measurement-induced back-action, a direct consequence of the Heisenberg uncertainty principle, is th...
When carrying out ultrasensitive continuous measurements of position, one must ultimately confront t...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Quantum mechanics...
Quantum fluctuations of the light field used for continuous position detection produces stochastic b...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
Several high-precision physics experiments are approaching a level of sensitivity at which the intri...
The application of quantum mechanics to macroscopic motion suggests many counterintuitive phenomena....
In quantum mechanics, the Heisenberg uncertainty principle places a fundamental limit in the measure...
The monitoring of a quantum-mechanical harmonic oscillator on which a classical force acts is import...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
Under a strong quantum measurement, the motion of an oscillator is disturbed by the measurement back...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Standard Quantum Limit (SQL) of a classical mechanical force detection results from quantum back act...
Under a strong quantum measurement, the motion of an oscillator is disturbed by the measurement bac...