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Strong–laser–field physics, non–classical light states and quantum information science
Strong–laser–field physics is a research direction that relies on the use of high-power lasers
and has led to fascinating achievements ranging from relativistic particle acceleration to …
and has led to fascinating achievements ranging from relativistic particle acceleration to …
Concepts in quantum state tomography and classical implementation with intense light: a tutorial
A tomographic measurement is a ubiquitous tool for estimating the properties of quantum
states, and its application is known as quantum state tomography (QST). The process …
states, and its application is known as quantum state tomography (QST). The process …
Q-plate technology: a progress review
Since their first introduction in 2006, q-plates have found a constantly increasing number of
uses in diverse contexts, ranging from fundamental research on complex structured light …
uses in diverse contexts, ranging from fundamental research on complex structured light …
Single‐Particle Entanglement
This review is about single‐particle entanglement. Entanglement occurs when the state of a
quantum system with at least two degrees of freedom has a particular non‐separable form …
quantum system with at least two degrees of freedom has a particular non‐separable form …
State transfer based on classical nonseparability
We present a state-transfer protocol that is mathematically equivalent to quantum
teleportation but uses classical nonseparability instead of quantum entanglement. In our …
teleportation but uses classical nonseparability instead of quantum entanglement. In our …
Revealing hidden coherence in partially coherent light
Coherence and correlations represent two related properties of a compound system. The
system can be, for instance, the polarization of a photon, which forms part of a polarization …
system can be, for instance, the polarization of a photon, which forms part of a polarization …
Optical coherency matrix tomography
The coherence of an optical beam having multiple degrees of freedom (DoFs) is described
by a coherency matrix G spanning these DoFs. This optical coherency matrix has not been …
by a coherency matrix G spanning these DoFs. This optical coherency matrix has not been …
Experimental classical entanglement in a 16 acoustic qubit-analogue
The possibility of achieving and controlling scalable classically entangled, ie, inseparable,
multipartite states, would fundamentally challenge the advantages of quantum systems in …
multipartite states, would fundamentally challenge the advantages of quantum systems in …
The sound of Bell states
Nonseparable states, analogous to “entangled” states, have generated great scientific
interest since the very beginning of quantum mechanics. To date, however, the concept of …
interest since the very beginning of quantum mechanics. To date, however, the concept of …
Interfering trajectories in experimental quantum-enhanced stochastic simulation
Simulations of stochastic processes play an important role in the quantitative sciences,
enabling the characterisation of complex systems. Recent work has established a quantum …
enabling the characterisation of complex systems. Recent work has established a quantum …