We consider the problem of estimating unknown transmittance $\theta$ of a target bathed in thermal background light. As quantum estimation theory yields the fundamental limits, we employ the lossy thermal-noise bosonic channel model, which describes sensor-target interaction quantum mechanically in many practical active-illumination systems (e.g., using emissions at optical, microwave, or radio frequencies). We prove that quantum illumination using two-mode squeezed vacuum (TMSV) states asymptotically achieves minimal quantum Cram\'{e}r-Rao bound (CRB) over all quantum states (not necessarily Gaussian) in the limit of low transmitted power. We characterize the optimal receiver structure for TMSV input, and show its advantage over other rece...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electrical Engineering...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...
Bosonic channels describe quantum-mechanically many practical communication links such as optical, m...
Finding feasible measurement bound is important in quantum sensing. We present analytic bound for qu...
High time-bandwidth product signal and idler pulses comprised of independent identically distributed...
In covert target detection, Alice attempts to send optical or microwave probes to detect whether or ...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
Quantum illumination is a technique for detecting the presence of a target in a noisy environment by...
Lossy bosonic channels play an important role in a number of quantum information tasks, since they w...
Quantum communication is an important branch of quantum information science, promising unconditional...
We show that by using the non-classical two-mode squeezed vacuum (TMSV) to illuminate an object, qua...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
An optical transmitter irradiates a target region containing a bright thermal-noise bath in which a ...
It is not clear if the performance of a quantum lidar or radar, without an idler and only using Gaus...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electrical Engineering...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...
Bosonic channels describe quantum-mechanically many practical communication links such as optical, m...
Finding feasible measurement bound is important in quantum sensing. We present analytic bound for qu...
High time-bandwidth product signal and idler pulses comprised of independent identically distributed...
In covert target detection, Alice attempts to send optical or microwave probes to detect whether or ...
Quantum target detection aims to utilise quantum technologies to achieve performances in target dete...
Quantum illumination is a technique for detecting the presence of a target in a noisy environment by...
Lossy bosonic channels play an important role in a number of quantum information tasks, since they w...
Quantum communication is an important branch of quantum information science, promising unconditional...
We show that by using the non-classical two-mode squeezed vacuum (TMSV) to illuminate an object, qua...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
An optical transmitter irradiates a target region containing a bright thermal-noise bath in which a ...
It is not clear if the performance of a quantum lidar or radar, without an idler and only using Gaus...
Thesis Supervisor: Jeffrey H. Shapiro Title: Julius A. Stratton Professor of Electrical Engineering...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer...
Quantum illumination is a quantum-optical sensing technique in which an entangled source is exploite...