Pascale Senellart - Profile and Journalist Details
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Host, DECODE QUANTUM
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Science Human Interest StoriesCovers: Information Technology General News
I don't cover topics about health, natural sciences, and technology.
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By Nicolas Maring, Andreas Fyrillas, Nico Margaria, Aristide Lemaître, Isabelle Sagnes, Sébastien Boissier, Alexia Salavrakos, Nadia Belabas, Pascale Senellart, Jean Senellart| Nature Verified AbstractQuantum computing aims at exploiting quantum phenomena to efficiently perform computations that are unfeasible even for the most powerful classical supercomputers. Among the promising technological approaches, photonic quantum computing offers the advantages of low decoherence, information processing with modest cryogenic requirements, and native integration with classical and quantum networks.
By Sarah Thomas, Pascale Senellart| Nature Verified The careful optimization of all components of a quantum emitter single photon source yields over 50% end-to-end efficiency, a benchmark for optical quantum technologies. The development of highly efficient and perfectly controlled building blocks for quantum technologies is becoming an increasingly important topic. Single-photon sources are one such building block, since quantum light is not only central to quantum communication, but also to remote quantum computing as well as sensing.
By Nicolas Maring, Andreas Fyrillas, Nico Margaria, Aristide Lemaître, Isabelle Sagnes, Sébastien Boissier, Alexia Salavrakos, Nadia Belabas, Pascale Senellart, Jean Senellart| Nature Verified AbstractQuantum computing aims at exploiting quantum phenomena to efficiently perform computations that are unfeasible even for the most powerful classical supercomputers. Among the promising technological approaches, photonic quantum computing offers the advantages of low decoherence, information processing with modest cryogenic requirements, and native integration with classical and quantum networks.
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DECODE QUANTUM
Saint-Aubin, Canton of Fribourg, Switzerland
016-915-6750