The integration of superconductive nanowire logic memories and energy efficient computing Josephson logic is explored. Nanowire memories are based on the integration of switchable superconducting nanowires with a suitable magnetic material. These memories exploit the electro-Thermal operation of the nanowires to efficiently store and read a magnetic state. In order to achieve proper memory operation a careful design of the nanowire assembly is necessary, as well as a proper choice of the magnetic material to be employed. At present several new superconducting logic families have been proposed, all tending to minimize the effect of losses in the digital Josephson circuits replacing resistors by adequate combinations of inductors in the logic...
Integration with conventional electronics offers a straightforward and economical approach to upgrad...
Thesis: S.M. in Computer Science, Massachusetts Institute of Technology, Department of Electrical En...
The basis for superconducting electronics can broadly be divided between two technologies: the Josep...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
A superconducting loop stores persistent current without any ohmic loss, making it an ideal platform...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Integration with conventional electronics offers a straightforward and economical approach to upgrad...
Thesis: S.M. in Computer Science, Massachusetts Institute of Technology, Department of Electrical En...
The basis for superconducting electronics can broadly be divided between two technologies: the Josep...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
A superconducting loop stores persistent current without any ohmic loss, making it an ideal platform...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Energy efficiency is a key issue for modern high performance computing. Superconductive digital elec...
Integration with conventional electronics offers a straightforward and economical approach to upgrad...
Thesis: S.M. in Computer Science, Massachusetts Institute of Technology, Department of Electrical En...
The basis for superconducting electronics can broadly be divided between two technologies: the Josep...