arrow
返回

Asynchronous Reversible Computing Unveiled Using Ballistic Shift Registers

delete2023-05-10
delete3
delete
OA
AI
K
Kevin Osborn *
W
Waltraut Wustmann
DOI:10.1103/PhysRevApplied.19.054034delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Reversible logic can provide lower switching-energy costs relative to all irreversible logic, including those developed by industry in semiconductor circuits; however, more research is needed to understand what is possible. Superconducting logic, an exemplary platform for both irreversible and reversible logic, uses flux quanta to represent bits and the reversible implementation may switch state with low energy dissipation relative to the energy of a flux quantum. Here, we simulate reversible shift register gates that are ballistic: their operation is powered by the input bits alone. A storage loop is added relative to previous gates as a key innovation, which bestows an asynchronous property to the gate such that input bits can arrive at different times as long as their order is clearly preserved. The shift register represents bit states by flux polarity, both in the stored bit as well as the ballistic input and output bits. Its operation consists of the elastic swapping of flux between the stored and the moving bit. This is related to a famous irreversible shift register, developed prior to the advent of superconducting flux quanta logic (which used irreversible gates). In the base design of our ballistic shift register (BSR), there is one input port and one output port but we find that we can make other asynchronous ballistic gates by extension. For example, we show that two BSRs operate in sequence without power added, giving a 2-bit sequential memory. We also show that a BSR with two input and two output ports allows a bit state to be set from one input port and then conveyed out on either output port. The gate constitutes the first asynchronous reversible 2-input gate. Finally, for a better insight into the dynamics, we introduce a collective-coordinate model. We find that the gate can be described as motion in two coordinates subject to a potential determined by the input bit and initial stored flux quantum. Aside from the favorable asynchronous feature, the gate is considered practical in the context of energy efficiency, parameter margins, logical depth, and speed.
Keyword:
FLUX
DESIGN
OPERATION
LOGIC

期刊

Physical Review Applied 封面图
Physical Review Applied
IF:
4.4
论文数:
7.1K
被引数:
2.8W

机构

University System of Maryland 封面图
University System of Maryland
学者数:
6.5W
论文数: 5.6W
被引数: 113
引用论文

引用论文

err2014-01-01
err0
PREAI
err
err分享
err收藏
An on-line interpretive Rorschach approach: Using Exner’s comprehensive system
err1981-07-01
err0
errOAAI
errWilliam G. Harris; Dawn Niedner; Craig Feldman; Andrea Fink; James H. Johnson
err分享
err收藏
Electronic and Spin Structures of the CaMn4O5(H2O)4 Cluster in OEC of PSII Refined to 1.9Å X-ray Resolution
err2012-01-01
err0
PREAI
errS. Yamanaka; K. Kanda; T. Saito; Y. Umena; K. Kawakami; J.-R. Shen; N. Kamiya; M. Okumura; H. Nakamura; K. Yamaguchi
err分享
err收藏
Design and high-speed test of (4 x 8)-bit single-flux-quantum shift register files
err2003-11-05
err11
PREAI
errFujiwara, K; Yamashiro, Y; Yoshikawa, N; Fujimaki, A; Terai, H; Yorozu, S
err分享
err收藏
Synthesis and properties of sulfur-bridged analogs of p-tert-Butylcalix[4]arene
err1997-08-01
err0
PREAI
errTyo Sone; Yoshihiro Ohba; Kazuhiko Moriya; Hideaki Kumada; Kazuaki Ito
err分享
err收藏
An electrokinetic approach to fabricating aquaporin biomimetic membranes for water purification
err2019-02-01
err0
PREAI
errAhmed Fuwad; Hyunil Ryu; Jun-Hee Lee; Daejoong Kim; Yeong-Eun Yoo; Young-Rok Kim; Sun Min Kim; Tae-Joon Jeon
err分享
err收藏
学者 查看更多内容