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Последици вдъхновение погледни вътре darrick chang nature physics благотворителност Крек саксия съкращавам

Designing exotic many-body states of atomic spin and motion in photonic  crystals | Nature Communications
Designing exotic many-body states of atomic spin and motion in photonic crystals | Nature Communications

Designing exotic many-body states of atomic spin and motion in photonic  crystals | Nature Communications
Designing exotic many-body states of atomic spin and motion in photonic crystals | Nature Communications

Purdue University: Department of Physics and Astronomy: Chen-Lung Hung
Purdue University: Department of Physics and Astronomy: Chen-Lung Hung

2Physics: A Single-Photon Transistor using Nanoscale Surface Plasmons
2Physics: A Single-Photon Transistor using Nanoscale Surface Plasmons

Prof. Darrick Chang | Max-Planck-Institute for Quantum Optics
Prof. Darrick Chang | Max-Planck-Institute for Quantum Optics

Bose-Einstein Condensation 2019 – Program & Abstracts
Bose-Einstein Condensation 2019 – Program & Abstracts

news – Page 2 – Angelakis Research Group
news – Page 2 – Angelakis Research Group

Quantum optics and quantum simulations group
Quantum optics and quantum simulations group

Quantum optics and quantum simulations group
Quantum optics and quantum simulations group

Entanglement of single-photons and chiral phonons in atomically thin WSe 2  - Nat. Phys. - X-MOL
Entanglement of single-photons and chiral phonons in atomically thin WSe 2 - Nat. Phys. - X-MOL

Darrick Chang ICFO – The Institute of Photonic Sciences Barcelona, Spain In  collaboration with: Jeff Kimble (Caltech); Jake Ta
Darrick Chang ICFO – The Institute of Photonic Sciences Barcelona, Spain In collaboration with: Jeff Kimble (Caltech); Jake Ta

Quantum Simulations with Photons in One-Dimensional Nonlinear Waveguides
Quantum Simulations with Photons in One-Dimensional Nonlinear Waveguides"

Jordi Tura i Brugués
Jordi Tura i Brugués

Quasi-CAT - QuantumCat
Quasi-CAT - QuantumCat

Simulating quantum light propagation through atomic ensembles using matrix  product states | Nature Communications
Simulating quantum light propagation through atomic ensembles using matrix product states | Nature Communications

Atom–light interactions in photonic crystals | Nature Communications
Atom–light interactions in photonic crystals | Nature Communications

arXiv:2005.04299v3 [physics.atom-ph] 21 Jul 2020
arXiv:2005.04299v3 [physics.atom-ph] 21 Jul 2020

Tunable super- and subradiant boundary states in one-dimensional atomic  arrays - Commun. Phys. - X-MOL
Tunable super- and subradiant boundary states in one-dimensional atomic arrays - Commun. Phys. - X-MOL

Scattering into one-dimensional waveguides from a coherently-driven  quantum-optical system – Quantum
Scattering into one-dimensional waveguides from a coherently-driven quantum-optical system – Quantum

arXiv:1605.00383v2 [quant-ph] 17 Sep 2016
arXiv:1605.00383v2 [quant-ph] 17 Sep 2016

This issue | Nature Physics
This issue | Nature Physics

Dr. Darrick Edward Chang (RYC-2012-12266)
Dr. Darrick Edward Chang (RYC-2012-12266)

A quantum network node with crossed optical fibre cavities - Nat. Phys. -  X-MOL
A quantum network node with crossed optical fibre cavities - Nat. Phys. - X-MOL

Research – Ultracold Quantum Gases
Research – Ultracold Quantum Gases

2Physics
2Physics