Published August 2019 | Version v1
Journal article

Thermodynamics of computation and linear stability limits of superfluid refrigeration of a model computing array

  • 1. Università di Palermo, Dipartimento di Scienze Agrarie, Alimentari e Forestali (Italy)
  • 2. Università di Salerno, Dipartimento di Ingegneria Industriale (Italy)
  • 3. Newcastle University, Joint Quantum Centre (JQC) Durham–Newcastle, School of Mathematics and Statistics (United Kingdom)
  • 4. Universitat Autònoma de Barcelona, Departament de Física (Spain)

Description

We analyze the stability of the temperature profile of an array of computing nanodevices refrigerated by flowing superfluid helium, under variations in temperature, computing rate, and barycentric velocity of helium. It turns out that if the variation in dissipated energy per bit with respect to temperature variations is higher than some critical values, proportional to the effective thermal conductivity of the array, then the steady-state temperature profiles become unstable and refrigeration efficiency is lost. Furthermore, a restriction on the maximum rate of variation in the local computation rate is found.

Additional details

Identifiers

Publishing Information

Journal Title
Zeitschrift fuer Angewandte Mathematik und Physik
Journal Volume
70
Journal Issue
4
Journal Page Range
p. 1-15
ISSN
0044-2275
CODEN
ZAMPA8

INIS

Country of Publication
Switzerland
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51118538
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Descriptors DEI
CALCULATION METHODS; HELIUM; REFRIGERATION; STABILITY; STEADY-STATE CONDITIONS; SUPERFLUIDITY; TEMPERATURE DEPENDENCE; THERMAL CONDUCTIVITY; THERMODYNAMICS
Descriptors DEC
COOLING; ELEMENTS; FLUIDS; GASES; NONMETALS; PHYSICAL PROPERTIES; RARE GASES; THERMODYNAMIC PROPERTIES

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Copyright
Copyright (c) 2019 Springer Nature Switzerland AG