Quantum entanglement has the potential to revolutionize the entire field of interferometric sensing by providing many orders of magnitude improvement in interferometer sensitivity. The quantum-entangled particle interferometer approach is very general and applies to many types of interferometers. In particular, without nonlocal entanglement, a generic classical interferometer has a statistical-sampling shot-noise limited sensitivity that scales like 1/√N, where N is the number of particles passing through the interferometer per unit time. However, if carefully prepared quantum correlations are engineered between the particles, then the interferometer sensitivity improves by a factor of √ to scale like I/N, which is the limit imposed by the ...
Heisenberg-limited measurement protocols can be used to gain an increase in measurement precision ov...
Quantum noise limits the sensitivity of interferometric measurements. It is generally admitted that ...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
Quantum entanglement has the potential to revolutionize the entire field of interferometric sensing ...
Quantum computers allow for direct simulation of the quantum interference and entanglement used in m...
We derive a quantum limit to the sensitivity of laser interferometric gravitational-wave detectors f...
Quantum fluctuation of light limits the sensitivity of advanced laser interferometric gravitational-...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
A new type of quantum interferometer was recently realized that employs parametric amplifiers (PAs) ...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
The Heisenberg uncertainty principle states that the position of an object cannot be known with infi...
Quantum fluctuation of light limits the sensitivity of advanced laser interferometric gravitational-...
We analyze in detail a system of two interferometers aimed at the detection of extremely faint phase...
In this thesis we will theoretically investigate three potentially useful physical systems, after fi...
The Heisenberg uncertainty principle states that the position of an object cannot be known with inf...
Heisenberg-limited measurement protocols can be used to gain an increase in measurement precision ov...
Quantum noise limits the sensitivity of interferometric measurements. It is generally admitted that ...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...
Quantum entanglement has the potential to revolutionize the entire field of interferometric sensing ...
Quantum computers allow for direct simulation of the quantum interference and entanglement used in m...
We derive a quantum limit to the sensitivity of laser interferometric gravitational-wave detectors f...
Quantum fluctuation of light limits the sensitivity of advanced laser interferometric gravitational-...
Quantum-enhanced interferometers utilize non-classical states of light in order to surpass the limit...
A new type of quantum interferometer was recently realized that employs parametric amplifiers (PAs) ...
Quantum metrology utilizes entanglement for improving the sensitivity of measurements. Up to now the...
The Heisenberg uncertainty principle states that the position of an object cannot be known with infi...
Quantum fluctuation of light limits the sensitivity of advanced laser interferometric gravitational-...
We analyze in detail a system of two interferometers aimed at the detection of extremely faint phase...
In this thesis we will theoretically investigate three potentially useful physical systems, after fi...
The Heisenberg uncertainty principle states that the position of an object cannot be known with inf...
Heisenberg-limited measurement protocols can be used to gain an increase in measurement precision ov...
Quantum noise limits the sensitivity of interferometric measurements. It is generally admitted that ...
The quantum nature of the electromagnetic field imposes a fundamental limit on the sensitivity of op...