Quantum photonics with layered 2D materials
Solid-state quantum devices use quantum entanglement for various quantum technologies,
such as quantum computation, encryption, communication and sensing. Solid-state …
such as quantum computation, encryption, communication and sensing. Solid-state …
Quantum-dot-based deterministic photon–emitter interfaces for scalable photonic quantum technology
The scale-up of quantum hardware is fundamental to realize the full potential of quantum
technology. Among a plethora of hardware platforms, photonics stands out: it provides a …
technology. Among a plethora of hardware platforms, photonics stands out: it provides a …
Highly stable and pure single-photon emission with 250 ps optical coherence times in InP colloidal quantum dots
Quantum photonic technologies such as quantum communication, sensing or computation
require efficient, stable and pure single-photon sources. Epitaxial quantum dots (QDs) have …
require efficient, stable and pure single-photon sources. Epitaxial quantum dots (QDs) have …
A bright and fast source of coherent single photons
A single-photon source is an enabling technology in device-independent quantum
communication, quantum simulation,, and linear optics-based and measurement-based …
communication, quantum simulation,, and linear optics-based and measurement-based …
Quantum decoherence
M Schlosshauer - Physics Reports, 2019 - Elsevier
Quantum decoherence plays a pivotal role in the dynamical description of the quantum-to-
classical transition and is the main impediment to the realization of devices for quantum …
classical transition and is the main impediment to the realization of devices for quantum …
High-performance semiconductor quantum-dot single-photon sources
Single photons are a fundamental element of most quantum optical technologies. The ideal
single-photon source is an on-demand, deterministic, single-photon source delivering light …
single-photon source is an on-demand, deterministic, single-photon source delivering light …
Ultra-low loss quantum photonic circuits integrated with single quantum emitters
The scaling of many photonic quantum information processing systems is ultimately limited
by the flux of quantum light throughout an integrated photonic circuit. Source brightness and …
by the flux of quantum light throughout an integrated photonic circuit. Source brightness and …
Coherent single-photon emission from colloidal lead halide perovskite quantum dots
Chemically made colloidal semiconductor quantum dots have long been proposed as
scalable and color-tunable single emitters in quantum optics, but they have typically suffered …
scalable and color-tunable single emitters in quantum optics, but they have typically suffered …
A quantum-dot spin qubit with coherence limited by charge noise and fidelity higher than 99.9%
The isolation of qubits from noise sources, such as surrounding nuclear spins and spin–
electric susceptibility,,–, has enabled extensions of quantum coherence times in recent …
electric susceptibility,,–, has enabled extensions of quantum coherence times in recent …
Kardar–Parisi–Zhang universality in a one-dimensional polariton condensate
Revealing universal behaviours is a hallmark of statistical physics. Phenomena such as the
stochastic growth of crystalline surfaces and of interfaces in bacterial colonies, and spin …
stochastic growth of crystalline surfaces and of interfaces in bacterial colonies, and spin …