Skip to the content
The Quantum Facts Logo
  • Home
  • Business
  • News
    • Programming
    • Security
    • Sensing
    • Technology
    • Telecommunications
  • International
    • Australia
    • Austria
    • Brazil
    • Canada
    • China
    • Denmark
    • Finland
    • France
    • Germany
    • India
    • Ireland
    • Israel
    • Italy
    • Japan
    • Korea
    • Netherlands
    • Norway
    • Russia
    • Singapore
    • Sweden
    • Switzerland
    • UK
  • Startups
  • Quantum Hubs
    • Quantum London
    • QuTech
    • QWorld
    • Swiss Quantum Hub
    • UK Quantum Technology Hub
Menu
Home » Newsletter


More results...

Generic selectors
Exact matches only
Search in title
Search in content
Post Type Selectors
Follow us on Social Media
linkedin

SUBSCRIBE TO NEWSLETTERS!

Latest News

RF heterodyne detection of squeezed light.

Digital reconstruction of squeezed light for quantum information processing

May 5, 2025
Conceptual artwork depicting a pair of entangled quantum particles. Two researchers have now developed an exact mathematical expression for the important process of entanglement distillation. © VICTOR DE SCHWANBERG/SCIENCE PHOTO LIBRARY

Major Breakthrough in Quantum Entanglement Mathematics

May 5, 2025
Quarton coupler physics and experimental device.

MIT’s Quantum Computing Breakthrough: The Quarton Coupler

May 3, 2025
Variational experiment principle.

Variable Optical Phase Sensing and Quantum Metrology

May 2, 2025
Left: The 2DEG chip measured in these experiments (top) connected to a chip containing electrical resonators (bottom), that enable fast calibrations. Right: Electron microscope image of a nanoscale device used to study Majoranas. Voltages applied to the thin electrodes (or gates) are used to create quantum dots at the positions indicated by dashed circles. Small strips made of superconducting Aluminum allow for turning the chain of three quantum dots into a so-called Kitaev chain.

Quantum Dots Unlock Majorana States for Stable Computing

May 1, 2025
Quantum teleportation with nonlinear sum frequency generation (SFG). The nonlinear nanophotonic platform greatly mitigates multiphoton noise and leads to high teleportation fidelity. Credit: The Grainger College of Engineering at the University of Illinois Urbana-Champaign

Quantum Leap: Nanophotonics Revolutionizes Teleportation

April 30, 2025
Experimental implementation for entangled-photon generation based on a superconducting circuit.

Quantum Qubit Excitation Yields Entangled Light for Networks

April 29, 2025
The multi-institutional research team that used SMSPDs to efficiently detect high-energy particles. Pictured, front row (left to right): Cristián Peña, Artur Apresyan, and Si Xie; middle row: Carlos Perez, Christina Wang, and Adi Bornheim; back row: Aram, Matias Barria, Valentina Vega, and Claudio San Martin. Credit: Cristián Peña, Fermilab

Quantum Sensors: Tracking Elusive Particles in 4D Precision

April 28, 2025
Steering nonlocality in high-speed telecommunication system without detection loophole - Experimental setup.

Steering nonlocality in high-speed telecommunication system without detection loophole

April 28, 2025
A NOON state is a superposed quantum state where N particles are in one state “at the same time” and in another “at the same time”. Here, the particles are trapped in two wells, within a trap formed by lasers. The superimposed state therefore, consists of a state in which all the particles are in the left-hand well, and a state in which they are trapped in the right-hand well. The particles interact with each other and ‘stick’ together when they are in the same site, preventing an isolated particle from leaving the trap. Credit: University of Liège / S. Dengis

Rapid Creation of NOON States

April 24, 2025
The Quantum Facts Logo

The Quantum Facts is a leading media about Quantum Computing and Technologies.

  • Contact us
  • Terms & Conditions
  • Privacy Policy
  • Cookie Policy

SUBSCRIBE TO OUR NEWSLETTERS

RF heterodyne detection of squeezed light.

Digital reconstruction of squeezed light for quantum information processing

May 5, 2025
Conceptual artwork depicting a pair of entangled quantum particles. Two researchers have now developed an exact mathematical expression for the important process of entanglement distillation. © VICTOR DE SCHWANBERG/SCIENCE PHOTO LIBRARY

Major Breakthrough in Quantum Entanglement Mathematics

May 5, 2025
Quarton coupler physics and experimental device.

MIT’s Quantum Computing Breakthrough: The Quarton Coupler

May 3, 2025
Variational experiment principle.

Variable Optical Phase Sensing and Quantum Metrology

May 2, 2025
Copyright 2019-2025, VoltaNode and Advixo - All Rights Reserved.
Close Menu