Device-Level Photonic Memories and Logic Applications Using Phase-Change Materials

被引:175
|
作者
Cheng, Zengguang [1 ]
Rios, Carlos [1 ,2 ]
Youngblood, Nathan [1 ]
Wright, C. David [3 ]
Pernice, Wolfram H. P. [4 ]
Bhaskaran, Harish [1 ]
机构
[1] Univ Oxford, Dept Mat, Pk Rd, Oxford OX1 3PH, England
[2] MIT, Dept Mat Sci & Engn, Cambridge, MA 02139 USA
[3] Univ Exeter, Dept Engn, Exeter EX4 4QF, Devon, England
[4] Univ Munster, Inst Phys, Heisenbergstr 11, D-48149 Munster, Germany
基金
英国工程与自然科学研究理事会; 欧盟地平线“2020”;
关键词
phase-change materials; photonic computing; photonic logic; photonic memories; pulse-width modulation; LOW-POWER; CHIP; THRESHOLD; CIRCUITS; GRAPHENE;
D O I
10.1002/adma.201802435
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Inspired by the great success of fiber optics in ultrafast data transmission, photonic computing is being extensively studied as an alternative to replace or hybridize electronic computers, which are reaching speed and bandwidth limitations. Mimicking and implementing basic computing elements on photonic devices is a first and essential step toward all-optical computers. Here, an optical pulse-width modulation (PWM) switching of phase-change materials on an integrated waveguide is developed, which allows practical implementation of photonic memories and logic devices. It is established that PWM with low peak power is very effective for recrystallization of phase-change materials, in terms of both energy efficiency and process control. Using this understanding, multilevel photonic memories with complete random accessibility are then implemented. Finally, programmable optical logic devices are demonstrated conceptually and experimentally, with logic OR and NAND achieved on just a single integrated photonic phase-change cell. This study provides a practical and elegant technique to optically program photonic phase-change devices for computing applications.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] Phase-Change and Ovonic Materials (Second Edition)
    Noe, Pierre
    Kooi, Bart J.
    Wuttig, Matthias
    PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2021, 15 (03):
  • [32] Phase-Change and Ovonic Materials (fifth edition)
    Noe, Pierre
    Kooi, Bart J.
    Wuttig, Matthias
    PHYSICA STATUS SOLIDI-RAPID RESEARCH LETTERS, 2024, 18 (10):
  • [33] Tunable metasurfaces based on phase-change materials
    Yan Wei
    Wang Ji-Yong
    Qu Yu-Rui
    Li Qiang
    Qiu Min
    ACTA PHYSICA SINICA, 2020, 69 (15)
  • [34] Phase-change Materials in Multifunctional Reconfigurable Metasurfaces
    Wu, Yuhao
    Campbell, Sawyer D.
    Whiting, Eric B.
    Kang, Lei
    Werner, Pingjuan L.
    Werner, Douglas H.
    2020 IEEE INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION AND NORTH AMERICAN RADIO SCIENCE MEETING, 2020, : 819 - 820
  • [35] Tunable metasurfaces enabled by phase-change materials
    Hafermann, Martin
    Semiconductors and Semimetals, 2024, 115 : 1 - 40
  • [36] Effects of phase-change materials on concrete pavements
    Sharma, Prashant
    Sharma, Neha
    Parashar, Arun Kumar
    MATERIALS TODAY-PROCEEDINGS, 2022, 62 : 3978 - 3982
  • [37] A Thermal Accumulator Based on Phase-Change Materials
    Bocharov, G. S.
    Vagin, A. O.
    Grigoriev, I. S.
    Dedov, A. V.
    Eletskii, A. V.
    Zakharenkov, A. V.
    Zverev, M. A.
    DOKLADY PHYSICS, 2022, 67 (06) : 169 - 172
  • [38] Effect of vacancy disorder in phase-change materials
    Song, Young-Sun
    Jhi, Seung-Hoon
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2020, 32 (17)
  • [39] Polarization-encodable photonic memory cells using next-generation 2D phase-change materials
    Shafiee, Amin
    Chen, Linhong
    Nikdast, Mahdi
    Yao, Jie
    NANO RESEARCH, 2025, 18 (03)
  • [40] Materials Screening for Disorder-Controlled Chalcogenide Crystals for Phase-Change Memory Applications
    Xu, Yazhi
    Wang, Xudong
    Zhang, Wei
    Schaefer, Lisa
    Reindl, Johannes
    vom Bruch, Felix
    Zhou, Yuxing
    Evang, Valentin
    Wang, Jiang-Jing
    Deringer, Volker L.
    Ma, En
    Wuttig, Matthias
    Mazzarello, Riccardo
    ADVANCED MATERIALS, 2021, 33 (09)