Development of free-space digital optics in computing

被引:4
|
作者
Gourlay, J [1 ]
Yang, TY [1 ]
Dines, JAB [1 ]
Snowdon, JF [1 ]
Walker, AC [1 ]
机构
[1] Heriot Watt Univ, Dept Phys, Opt Comp Grp, Edinburgh EH14 4AS, Midlothian, Scotland
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1109/2.652914
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
To someone with an electronics or computer science background, many of optical computing's concepts may seem outlandish. Optics grew out of applied physics and still retains many aspects of that heritage. This is in contrast to digital computing's roots in electronics. Recent efforts have been made to bring optical computing more in line with microelectronic engineering. Perhaps that will speed the acceptance of opto-electronic technology. The authors describe their research into optical devices for data communication. They are investigating free-space optics-the propagation of optical signals through the air using lenses and mirrors to focus and redirect the beams. The advantages of free-space optics, derive from their large spatial bandwidth and physical channel density. Like the human eye, which takes in an enormous amount of information in parallel, a low-cost lens can provide more than a million independent connections. The authors aim to exploit optoelectronic computing's capability for such massively parallel data transfers.
引用
收藏
页码:38 / +
页数:8
相关论文
共 50 条
  • [41] Atmospheric free-space coherent optical communications with adaptive optics
    Ting, Chueh
    Zhang, Chengyu
    Yang, Zikai
    FREE-SPACE LASER COMMUNICATION AND ATMOSPHERIC PROPAGATION XXIX, 2017, 10096
  • [42] Involvement of free-space optics in Raman distributed temperature sensing
    Yao, Cheng-Kai
    Manie, Yibeltal Chanie
    Chen, Hung-Ming
    Hsu, Wen-Yang
    Lin, Tzu-Chiao
    Peng, Peng-Chun
    OPTICS LETTERS, 2023, 48 (23) : 6340 - 6343
  • [43] Secure Chaotic Transmission on a Free-Space Optics Data Link
    Annovazzi-Lodi, Valerio
    Aromataris, Giuseppe
    Benedetti, Mauro
    Merlo, Sabina
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 2008, 44 (11-12) : 1089 - 1095
  • [44] OPTICAL CLOCK DISTRIBUTION USING INTEGRATED FREE-SPACE OPTICS
    WALKER, SJ
    JAHNS, J
    OPTICS COMMUNICATIONS, 1992, 90 (4-6) : 359 - 371
  • [45] Debunking the recurring myth of a magic wavelength for Free-Space Optics
    Korevaar, E
    Kim, I
    McArthur, B
    OPTICAL WIRELESS COMMUNICATIONS V, 2002, 4873 : 155 - 166
  • [46] Free-space carpet cloak using transformation optics and graphene
    Zhang, Runren
    Lin, Xiao
    Shen, Lian
    Wang, Zuojia
    Zheng, Bin
    Lin, Shisheng
    Chen, Hongsheng
    OPTICS LETTERS, 2014, 39 (23) : 6739 - 6742
  • [47] Company ally to provide free-space optics products in China
    不详
    PHOTONICS SPECTRA, 2003, 37 (11) : 38 - 38
  • [48] The free-space optics system using QCL: Models and solutions
    Liu, Xian
    2007 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS, VOLS 1-14, 2007, : 2457 - 2461
  • [49] Correlation of free-space optics link attenuation with sonic temperature
    Chladova, Zuzana
    Fiser, Ondrej
    Brazda, Vladimir
    Svoboda, Jaroslav
    OPTICAL ENGINEERING, 2013, 52 (03)
  • [50] Wavelength diversity in free-space optics to alleviate fog effects
    Wainright, E
    Refai, HH
    Sluss, JJ
    Free-Space Laser Communication Technologies XVII, 2005, 5712 : 110 - 118