A wide variety of positioning and ranging procedures are based on repeatedly sending electromagnetic pulses through space and measuring their time of arrival. The accuracy of such procedures is classically limited by the available power and bandwidth. Quantum entanglement and squeezing have been exploited in the context of interferometry(1-5), frequency measurements(6), lithography(7) and algorithms(8). Here we report that quantum entanglement and squeezing can also be employed to overcome the classical limits in procedures such as positioning systems, clock synchronization and ranging. Our use of frequency-entangled pulses to construct quantum versions of these protocols results in enhanced accuracy compared with their classical analogues....
We address the use of entanglement to improve the precision of generalized quantum interferometry, i...
We introduce methods for clock synchronization that make use of the adiabatic exchange of nondegener...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
A wide variety of positioning and ranging procedures are based on repeatedly sending electromagnetic...
A wide variety of positioning and ranging procedures are based on repeatedly sending electromagnetic...
A method is proposed to employ entangled and squeezed light for determining the position of a party ...
The development of precise atomic clocks plays an increasingly important role in modern society. Sha...
We show that a quantum clock can not be teleported without prior synchronization between sender and ...
Radars use time-of-flight measurement to infer the range to a distant target from its return’s round...
Abstract. We report that entangled pairs of quantum clocks (non-degenerate quantum bits) can be used...
The current frontier of our understanding of the physical universe is dominated by quantum phenomena...
We propose a quantum method to judge whether two spatially separated clocks have been synchronized w...
We consider the Clock Game - task formulated in the framework of quantum information theory - that c...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
Advances in engineering quantum systems are expected to lead to a new generation of quantum technolo...
We address the use of entanglement to improve the precision of generalized quantum interferometry, i...
We introduce methods for clock synchronization that make use of the adiabatic exchange of nondegener...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...
A wide variety of positioning and ranging procedures are based on repeatedly sending electromagnetic...
A wide variety of positioning and ranging procedures are based on repeatedly sending electromagnetic...
A method is proposed to employ entangled and squeezed light for determining the position of a party ...
The development of precise atomic clocks plays an increasingly important role in modern society. Sha...
We show that a quantum clock can not be teleported without prior synchronization between sender and ...
Radars use time-of-flight measurement to infer the range to a distant target from its return’s round...
Abstract. We report that entangled pairs of quantum clocks (non-degenerate quantum bits) can be used...
The current frontier of our understanding of the physical universe is dominated by quantum phenomena...
We propose a quantum method to judge whether two spatially separated clocks have been synchronized w...
We consider the Clock Game - task formulated in the framework of quantum information theory - that c...
We generate input states with reduced quantum uncertainty (spin-squeezed states) for a hyperfine ato...
Advances in engineering quantum systems are expected to lead to a new generation of quantum technolo...
We address the use of entanglement to improve the precision of generalized quantum interferometry, i...
We introduce methods for clock synchronization that make use of the adiabatic exchange of nondegener...
This thesis explores various protocols which can be applied to quantum metrology, such that precisio...