The controlled generation of single photons is an essential element of numerous quantum technology applications, such as ...
What happens if you embed an ultrafast quantum computer inside a diamond (you know, aside from qualifying for sale in one of Tiffany’s catalogues and inviting “forever” computing quips)? Answer: You ...
Under the direction of Prof. Dr. Tim Schröder, a research team from the Joint Lab Diamond Nanophotonics at the Ferdinand-Braun-Institut (FBH) in Berlin and the Integrated Quantum Photonics working ...
Inside most photonic chips, light races through tiny optical wires. It carries information far faster than electricity can in many conventional systems.
Quantum computers could solve certain problems that would take traditional classical computers an impractically long time to ...
Diamond-based quantum sensors expose magnetic fluctuations beyond current instruments, offering insight into graphene and superconductors used in MRI and future tech. (Nanowerk News) In spaces smaller ...
Diamond color centers are a well researched field, but using them at scale as qubits was out of reach until recently. Their Quantum Transistor device (patent pending) resolves the charge stability ...
The synthetic diamond market is transforming, with technology-grade diamonds driving growth as lab-grown gemstone prices plummet. Key investments exceed $4 billion, focusing on AI chip cooling, ...
Platform to detect human-relevant insights for discovery and development of therapies for neurological diseases, ...
For the first time, researchers have demonstrated that the properties of the perovskite family of materials can be used to ...
Crystal jellyfish have an eerie beauty: thanks to a natural protein, they emit a faint green glow. For decades, researchers have used that green fluorescent protein and similar molecules to light up ...
In spaces smaller than a wavelength of light, electric currents jump from point to point and magnetic fields corkscrew through atomic lattices in ways that defy intuition. Scientists have only ever ...
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