We test the effect of an external RF field on the switching processes of magnetic Josephson junctions (MJJs) suitable for the realization of fast, scalable cryogenic memories compatible with Single Flux Quantum logic. We show that the combined application of microwaves and magnetic field pulses can improve the performances of the device, increasing the separation between the critical current levels corresponding to logical "0" and "1." The enhancement of the current level separation can be as high as 80% using an optimal set of parameters. We demonstrate that external RF fields can be used as an additional tool to manipulate the memory states, and we expect that this approach may lead to the development of new methods of selecting MJJs and ...
Superconducting computing promises enhanced computational power in both classical and quantum approa...
© 2017 IOP Publishing Ltd.In this work we propose a hybrid device based on a long Josephson junction...
AbstractThe concept of the Josephson energy emerges directly from the original predictions of Brian ...
We test the effect of an external RF field on the switching processes of magnetic Josephson junction...
AbstractThe lack of dense, fast, energy efficient memory has been the main detractor for multiple su...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
In this paper, we give a characterization of the RF effect of memory switching on Nb-Al/AlO x -(Nb)-...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
Josephson junctions drive the operation of superconducting qubits and they are the key for the coupl...
In this work I present novel experimental characterization of two different kind of unconventional f...
We report the fabrication and testing, at 4.2 K, of an SISFS device, where S, F, and I denote a supe...
Energy efficient cryogenic memory and Josephson junction arrays have the potential of revolutionizin...
We demonstrate a Josephson junction with a weak link containing two ferromagnets with perpendicular ...
The φ Josephson junction has a doubly degenerate ground state with the Josephson phases ±φ±φ. We dem...
With the ever-increasing energy need to process big data, the realization of low-power computing tec...
Superconducting computing promises enhanced computational power in both classical and quantum approa...
© 2017 IOP Publishing Ltd.In this work we propose a hybrid device based on a long Josephson junction...
AbstractThe concept of the Josephson energy emerges directly from the original predictions of Brian ...
We test the effect of an external RF field on the switching processes of magnetic Josephson junction...
AbstractThe lack of dense, fast, energy efficient memory has been the main detractor for multiple su...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
In this paper, we give a characterization of the RF effect of memory switching on Nb-Al/AlO x -(Nb)-...
We propose a nonvolatile memory element based on a lateral ferromagnetic Josephson junction with spi...
Josephson junctions drive the operation of superconducting qubits and they are the key for the coupl...
In this work I present novel experimental characterization of two different kind of unconventional f...
We report the fabrication and testing, at 4.2 K, of an SISFS device, where S, F, and I denote a supe...
Energy efficient cryogenic memory and Josephson junction arrays have the potential of revolutionizin...
We demonstrate a Josephson junction with a weak link containing two ferromagnets with perpendicular ...
The φ Josephson junction has a doubly degenerate ground state with the Josephson phases ±φ±φ. We dem...
With the ever-increasing energy need to process big data, the realization of low-power computing tec...
Superconducting computing promises enhanced computational power in both classical and quantum approa...
© 2017 IOP Publishing Ltd.In this work we propose a hybrid device based on a long Josephson junction...
AbstractThe concept of the Josephson energy emerges directly from the original predictions of Brian ...