Publikation: Rapid Flipping of Parametric Phase States
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We experimentally demonstrate flipping the phase state of a parametron within a single period of its oscillation. A parametron is a binary logic element based on a driven nonlinear resonator. It features two stable phase states that define an artificial spin. The most basic operation performed on a parametron is a bit flip between these two states. Thus far, this operation involved changing the energetic population of the resonator and therefore required a number of oscillations on the order of the quality factor Q. Our technique takes a radically different approach and relies on rapid control of the underlying potential. Our work represents a paradigm shift for phase-encoded logic operations by boosting the speed of a parametron bit flip to its ultimate limit.
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FRIMMER, Martin, Toni L. HEUGEL, Žiga NOSAN, Felix TEBBENJOHANNS, David HÄLG, Abdulkadir AKIN, Christian L. DEGEN, Lukas NOVOTNY, Oded ZILBERBERG, Alexander EICHLER, 2019. Rapid Flipping of Parametric Phase States. In: Physical Review Letters. American Physical Society (APS). 2019, 123(25), 254102. ISSN 0031-9007. eISSN 1079-7114. Available under: doi: 10.1103/PhysRevLett.123.254102BibTex
@article{Frimmer2019-12-20Rapid-54988, year={2019}, doi={10.1103/PhysRevLett.123.254102}, title={Rapid Flipping of Parametric Phase States}, number={25}, volume={123}, issn={0031-9007}, journal={Physical Review Letters}, author={Frimmer, Martin and Heugel, Toni L. and Nosan, Žiga and Tebbenjohanns, Felix and Hälg, David and Akin, Abdulkadir and Degen, Christian L. and Novotny, Lukas and Zilberberg, Oded and Eichler, Alexander}, note={Article Number: 254102} }
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