Quantum-enhanced measurements use quantum mechanical effects to enhance the sensitivity of the measurement of classical quantities, such as the length of an optical cavity. The major goal is to beat the standard quantum limit (SQL), that is, an uncertainty of order 1/ N, where N is the number of quantum resources (for example, the number of photons or atoms used), and to achieve a scaling 1/N, known as the Heisenberg limit. So far very few experiments have demonstrated an improvement over the SQL. The required quantum states are generally highly entangled, difficult to produce, and very prone to decoherence. Here, we show that Heisenberg- limited measurements can be achieved without the use of entangled states by coupling the quantum resour...
This thesis presents three different results in quantum information theory. The first result address...
We propose a practical arrangement that allows one to reach the Heisenberg limit in precision phase-...
Quantum measurement is a nontrivial physical process connecting the quantum and classical worlds. Ho...
Quantum precision enhancement is of fundamental importance for the development of advanced metrologi...
We exhibit three inequalities involving quantum measurement, all of which are sharp and state indepe...
As an essential intermediary between theories and their experimental proofs, measurement is meaningf...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
Questions about quantum limits on measurement precision were once viewed from the perspective of how...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
We examine the results of the paper “Precision metrology using weak measurements” (Zhang et al. arXi...
Quantum precision enhancement is of fundamental importance for the development of advanced metrologi...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
This thesis presents three different results in quantum information theory. The first result address...
We propose a practical arrangement that allows one to reach the Heisenberg limit in precision phase-...
Quantum measurement is a nontrivial physical process connecting the quantum and classical worlds. Ho...
Quantum precision enhancement is of fundamental importance for the development of advanced metrologi...
We exhibit three inequalities involving quantum measurement, all of which are sharp and state indepe...
As an essential intermediary between theories and their experimental proofs, measurement is meaningf...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
Questions about quantum limits on measurement precision were once viewed from the perspective of how...
Quantum mechanics, through the Heisenberg uncertainty principle, imposes limits on the precision of ...
We examine the results of the paper “Precision metrology using weak measurements” (Zhang et al. arXi...
Quantum precision enhancement is of fundamental importance for the development of advanced metrologi...
Adopting quantum resources for parameter estimation discloses the possibility to realize quantum sen...
Quantum metrology has many important applications in science and technology, ranging from frequency ...
In this paper we explore the possibility of performing Heisenberg limited quantum metrology of a pha...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
This thesis presents three different results in quantum information theory. The first result address...
We propose a practical arrangement that allows one to reach the Heisenberg limit in precision phase-...
Quantum measurement is a nontrivial physical process connecting the quantum and classical worlds. Ho...