QuiX Demonstrates Its Strength With Quantum Photonic Engineering
QuiX Quantum is a company based in Enschede, the Netherlands, that realizes quantum technology solutions based on the proprietary silicon nitride waveguide technology TriPleX that enables the realization of large-scale integrated photonic circuits with low loss. The maturity of the waveguide technology allows for achieving full reconfigurability and all-to-all connectivity of the elements of the photonic processor that can be thus defined as universal.
The Shorts | 7/21/21 | Technology and Hardware in Quantum Computing
The rate at which quantum computing is hitting the media stream is ever-increasing. This piece is a collection of recent articles and reports covering various aspects of quantum computing from the lens of technology and hardware. Mea Cubitt
The Shorts | 7/21/21 | Technology and Hardware in Quantum Computing
The rate at which quantum computing is hitting the media stream is ever-increasing. This piece is a collection of recent articles and reports covering various aspects of quantum computing from the lens of technology and hardware. Mea Cubitt
U.S. ANL Manipulates Magnonic States; Opportunity for Quantum Computing, Communications, and Sensing
Scientists at the U.S. Department of Energy’s (DOE) Argonne National Laboratory and the University of Chicago’s Pritzker School of Molecular Engineering have devised a unique means of achieving effective gate operation with a form of information processing called electromagnonics. Their pivotal discovery allows real-time control of information transfer between microwave photons and magnons. And it could result in a new generation of classical electronic and quantum signal devices that can be used in various applications such as signal switching, low-power computing and quantum networking.
U.S. ANL Manipulates Magnonic States; Opportunity for Quantum Computing, Communications, and Sensing
Scientists at the U.S. Department of Energy’s (DOE) Argonne National Laboratory and the University of Chicago’s Pritzker School of Molecular Engineering have devised a unique means of achieving effective gate operation with a form of information processing called electromagnonics. Their pivotal discovery allows real-time control of information transfer between microwave photons and magnons. And it could result in a new generation of classical electronic and quantum signal devices that can be used in various applications such as signal switching, low-power computing and quantum networking.
QuantWare’s Transmon Qubits Just-in-Time or Just-in-Case?
Informative report from John Timmer covering QuantWare’s step into commercializing quantum processors. But are they too late? Too small? Or just right? Recommend reading from the source, below. Because Quantum Is Coming. Qubit Startup hopes the world is ready to buy quantum processors Read More… + Rijlaarsdam told Ars that he expects the company to […]
QuantWare’s Transmon Qubits Just-in-Time or Just-in-Case?
Informative report from John Timmer covering QuantWare’s step into commercializing quantum processors. But are they too late? Too small? Or just right? Recommend reading from the source, below. Because Quantum Is Coming. Qubit Startup hopes the world is ready to buy quantum processors Read More… + Rijlaarsdam told Ars that he expects the company to […]
The Shorts | 7/13/21 | Technology and Hardware in Quantum Computing
The rate at which quantum computing is hitting the media stream is ever-increasing. This piece is a collection of recent articles and reports covering various aspects of quantum computing from the lens of technology and hardware. Mea Cubitt
The Shorts | 7/13/21 | Technology and Hardware in Quantum Computing
The rate at which quantum computing is hitting the media stream is ever-increasing. This piece is a collection of recent articles and reports covering various aspects of quantum computing from the lens of technology and hardware. Mea Cubitt
Major Qubit Technical Feat Achieved by Archer Materials’ 12CQ Chip Project
Archer Materials announced today it has an early indication of on-chip qubit control in microscopic-scale qubit material, which marks significant progress as part of the Company’s 12CQ quantum computing chip development.