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Διεκδικώ ηλεκτρόδιο παλτό b hacker et al nature 536 193 2016 ομίχλη Επιτροπή σωματίδιο

Temporal trapping: a route to strong coupling and deterministic optical  quantum computation
Temporal trapping: a route to strong coupling and deterministic optical quantum computation

BJNANO - Observation of multiple bulk bound states in the continuum modes  in a photonic crystal cavity
BJNANO - Observation of multiple bulk bound states in the continuum modes in a photonic crystal cavity

Human Brain Mapping | Neuroimaging Journal | Wiley Online Library
Human Brain Mapping | Neuroimaging Journal | Wiley Online Library

Cavity quantum electrodynamics with color centers in diamond
Cavity quantum electrodynamics with color centers in diamond

A photon–photon quantum gate based on Rydberg interactions | Nature Physics
A photon–photon quantum gate based on Rydberg interactions | Nature Physics

A passive photon–atom qubit swap operation | Nature Physics
A passive photon–atom qubit swap operation | Nature Physics

Jaynes-Cummings interaction between low-energy free electrons and cavity  photons | Science Advances
Jaynes-Cummings interaction between low-energy free electrons and cavity photons | Science Advances

A quantum-logic gate between distant quantum-network modules | Science
A quantum-logic gate between distant quantum-network modules | Science

A single-photon switch and transistor enabled by a solid-state quantum  memory | Science
A single-photon switch and transistor enabled by a solid-state quantum memory | Science

IJMS | Free Full-Text | Innovations in Genomics and Big Data Analytics for  Personalized Medicine and Health Care: A Review
IJMS | Free Full-Text | Innovations in Genomics and Big Data Analytics for Personalized Medicine and Health Care: A Review

Storing single photons emitted by a quantum memory on a highly excited  Rydberg state | Nature Communications
Storing single photons emitted by a quantum memory on a highly excited Rydberg state | Nature Communications

A photon–photon quantum gate based on a single atom in an optical resonator  | Nature
A photon–photon quantum gate based on a single atom in an optical resonator | Nature

Project progress reports : Quantum-Computing Hardware Based on  Nanofiber-Cavity QED
Project progress reports : Quantum-Computing Hardware Based on Nanofiber-Cavity QED

Few-photon all-optical phase rotation in a quantum-well micropillar cavity  | Nature Photonics
Few-photon all-optical phase rotation in a quantum-well micropillar cavity | Nature Photonics

Deterministic photonic quantum computation in a synthetic time dimension –  arXiv Vanity
Deterministic photonic quantum computation in a synthetic time dimension – arXiv Vanity

A photon–photon quantum gate based on a single atom in an optical resonator  | Nature
A photon–photon quantum gate based on a single atom in an optical resonator | Nature

Towards a source of multi-photon entangled states for linear optical  quantum computing – arXiv Vanity
Towards a source of multi-photon entangled states for linear optical quantum computing – arXiv Vanity

PDF) Photon-Mediated Quantum Gate between Two Trapped Neutral Atoms in an  Optical Cavity
PDF) Photon-Mediated Quantum Gate between Two Trapped Neutral Atoms in an Optical Cavity

Advancing Targeted Protein Degradation via Multiomics Profiling and  Artificial Intelligence | Journal of the American Chemical Society
Advancing Targeted Protein Degradation via Multiomics Profiling and Artificial Intelligence | Journal of the American Chemical Society

A photon–photon quantum gate based on a single atom in an optical resonator  | Nature
A photon–photon quantum gate based on a single atom in an optical resonator | Nature

Cancers | Free Full-Text | Circulating and Endometrial Tissue microRNA  Markers Associated with Endometrial Cancer Diagnosis, Prognosis, and  Response to Treatment
Cancers | Free Full-Text | Circulating and Endometrial Tissue microRNA Markers Associated with Endometrial Cancer Diagnosis, Prognosis, and Response to Treatment

Research Details | Max-Planck-Institute for Quantum Optics
Research Details | Max-Planck-Institute for Quantum Optics

Project progress reports : Quantum-Computing Hardware Based on  Nanofiber-Cavity QED
Project progress reports : Quantum-Computing Hardware Based on Nanofiber-Cavity QED

A photon–photon quantum gate based on a single atom in an optical resonator  | Nature
A photon–photon quantum gate based on a single atom in an optical resonator | Nature

Systems biology approach to functionally assess the Clostridioides  difficile pangenome reveals genetic diversity with discriminatory power |  PNAS
Systems biology approach to functionally assess the Clostridioides difficile pangenome reveals genetic diversity with discriminatory power | PNAS

A photon–photon quantum gate based on a single atom in an optical resonator  | Nature
A photon–photon quantum gate based on a single atom in an optical resonator | Nature

Repulsive photons in a quantum nonlinear medium | Nature Physics
Repulsive photons in a quantum nonlinear medium | Nature Physics

All-optical reversible single-photon isolation at room temperature |  Science Advances
All-optical reversible single-photon isolation at room temperature | Science Advances