We revisit well-known protocols in quantum metrology using collective spins and propose a unifying picture for optimal state preparation based on a semiclassical description in phase space. We show how this framework allows for quantitative predictions of the timescales required to prepare various metrologically useful states, and that these predictions remain accurate even for moderate system sizes, surprisingly far from the classical limit. Furthermore, this framework allows us to build a geometric picture that relates optimal (exponentially fast) entangled probe preparation to the existence of separatrices connecting saddle points in phase space. We illustrate our results with the paradigmatic examples of the two-axis counter-twisting an...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We revisit well-known protocols in quantum metrology using collective spins and propose a unifying p...
A quantum metrology protocol for parameter estimation is typically comprised of three stages: probe ...
State preparation plays a pivotal role in numerous quantum algorithms, including quantum phase estim...
Quantum metrology uses quantum states with no classical counterpart to measure a physical quantity w...
Entanglement is one of the most intriguing features of quantum mechanics and holds great promise for...
We present an alternative protocol allowing for the preparation of critical states that instead of s...
We carefully examine critical metrology and present an improved critical quantum metrology protocol ...
We propose protocols for the creation of useful entangled states in a system of spins collectively c...
We investigate the generation of non-classical states of spins coupled to a common cavity by means o...
Quantum metrology offers a quadratic advantage over classical approaches to parameter estimation pro...
We develop a variational principle to determine the quantum controls and initial state that optimize...
Projected squeezed (PS) states are multipartite entangled states generated by unitary spin squeezing...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...
We revisit well-known protocols in quantum metrology using collective spins and propose a unifying p...
A quantum metrology protocol for parameter estimation is typically comprised of three stages: probe ...
State preparation plays a pivotal role in numerous quantum algorithms, including quantum phase estim...
Quantum metrology uses quantum states with no classical counterpart to measure a physical quantity w...
Entanglement is one of the most intriguing features of quantum mechanics and holds great promise for...
We present an alternative protocol allowing for the preparation of critical states that instead of s...
We carefully examine critical metrology and present an improved critical quantum metrology protocol ...
We propose protocols for the creation of useful entangled states in a system of spins collectively c...
We investigate the generation of non-classical states of spins coupled to a common cavity by means o...
Quantum metrology offers a quadratic advantage over classical approaches to parameter estimation pro...
We develop a variational principle to determine the quantum controls and initial state that optimize...
Projected squeezed (PS) states are multipartite entangled states generated by unitary spin squeezing...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems, an...
We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and...