Quantum Information Storage via Silicon & Organic Carbon-Based Molecules
Quantum Information Storage via Silicon & Organic Carbon-Based Molecules Researchers discover new way to split and sum photons with silicon In brief… + A team
Quantum Information Storage via Silicon & Organic Carbon-Based Molecules Researchers discover new way to split and sum photons with silicon In brief… + A team
Research at Bonn and Cologne Universities Opens BEC-based Applications for Quantum Computing Light forks one way in a Bose-Einstein condensate Excerpts and salient points ~
Jian-Wei Pan Studies Boson Sampling to Achieve Quantum Supremacy Quantum Computer Made from Photons Achieves a New Record Excerpts and salient points ~ + In
Advances in Single Photon Production Using Tungsten Diselenide Solving the mystery of quantum light in thin layers Excerpts and salient points ~ + When a
Stevens Institute of Technology Edges Closer to Room-temperature Quantum Chip Without Silicon Stevens Team Closes In On “Holy Grail” of Room Temperature Quantum Computing Chips
Truth of Light and Matter Revealed by Superconducting Quantum Circuits? What really are light and matter? Superconducting quantum circuits could reveal the answer Excerpts and
Computing Strictly with Photons Nanoscale Photon Diode for More Energy Efficient Computing and Communications Key points… + The future of faster, more efficient information processing
New Protocol Achieving On-demand Single Photons; Realization of Optical Storage A New Theory for Trapping Light Particles Aims to Advance Development of Quantum Computers The
Stabilising quantum computers with ‘noise-cancelling headphones’ Excerpts and salient points ~ • Quantum entanglement is a delicate state that requires the particles used for computing,
Two-Cavity System Generates High-Quality Single Photons Efficiently A new dual-cavity design for a quantum emitter, from the Massachusetts Institute of Technology (MIT), emits more high-quality