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Josephson Thermal Memory

Claudio Guarcello, Paolo Solinas, Alessandro Braggio, Massimiliano Di Ventra, Francesco Giazotto

DOI 10.1103/PhysRevApplied.9.014021 · Physical Review Applied

T1

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Abstract

We propose a superconducting thermal memory device that exploits the thermal hysteresis in a flux-controlled temperature-biased superconducting quantum-interference device (SQUID). This system reveals a flux-controllable temperature bistability, which can be used to define two well-distinguishable thermal logic states. We discuss a suitable writing-reading procedure for these memory states. The time of the memory writing operation is expected to be on the order of approximately 0.2 ns for a Nb-based SQUID in thermal contact with a phonon bath at 4.2 K. We suggest a noninvasive readout scheme for the memory states based on the measurement of the effective resonance frequency of a tank circuit inductively coupled to the SQUID. The proposed device paves the way for a practical implementation of thermal logic and computation. The advantage of this proposal is that it represents also an example of harvesting thermal energy in superconducting circuits.

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FormulaReported Tc (K)Pressure (GPa)Type
Nb

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9.2Pressure not reportedunknown

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