Volume-consumption comparisons of free-space and guided-wave optical interconnections

被引:5
|
作者
Li, Y [1 ]
Popelek, J [1 ]
机构
[1] NEC Res Inst, Princeton, NJ 08540 USA
关键词
D O I
10.1364/AO.39.001815
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We compare volume-consumption characteristics of free-space and guided-wave optical interconnections. System volume consumption is used as a fundamental measure of various point-to-point space-invariant and space-variant interconnections of two-dimensional arrays of N-1/2 x N-1/2 points. We show that, in free-Space and space-invariant situations, although volume consumption for macroaperture optics is O-1(N-3/2), where O denotes the order, it is only O-2(N) for microaperture optics. For free-space and space-variant operations only microaperture optics is possible without fundamental power losses. The corresponding minimum volume consumption is O-3(N-3). We show that single microaperture-per-channel implementations of either space-invariant or space-variant operations are, in general, more volume efficient than are their two-cascade microaperture-per-channel counterparts. We also show that, for minimizing volume consumption, the optimum relative apertures F#(opt) for space-variant optical elements are, respectively, (5N)(1/2)/4 for a Single microaperture-per-channel geometry and (5N)(1/2)/2 for a two-cascade microaperture-per-channel geometry. In guided-wave or fiber interconnect cases our study shows that the volume consumption for space-invariant and space-variant operations is O-4(N), with O-4 < O-2, and O-5(N-3/2), respectively. Thus an important conclusion of the study is that free-space optics is less volume efficient than is guided-wave optics in both space-invariant and space-variant interconnect applications. (C) 2000 Optical Society of America OCIS codes: 200.4650, 200.4960, 050.1960, 130.3120, 200.2610.
引用
收藏
页码:1815 / 1825
页数:11
相关论文
共 50 条
  • [11] Performances of optical multi-chip-module interconnects: comparing guided-wave and free-space pathways
    Baukens, V
    Verschaffelt, G
    Tuteleers, P
    Vynck, P
    Ottevaere, H
    Kufner, M
    Kufner, S
    Veretennicoff, I
    Bockstaele, R
    Van Hove, A
    Dhoedt, B
    Baets, R
    Thienpont, H
    JOURNAL OF OPTICS A-PURE AND APPLIED OPTICS, 1999, 1 (02): : 255 - 261
  • [12] PLANAR PACKAGING OF FREE-SPACE OPTICAL INTERCONNECTIONS
    JAHNS, J
    PROCEEDINGS OF THE IEEE, 1994, 82 (11) : 1623 - 1631
  • [13] Bit-parallel add/drop optical circuits using guided-wave and free-space hybrid components
    Ai, J
    Li, Y
    PHOTONIC DEVICES AND ALGORITHMS FOR COMPUTING, 1999, 3805 : 233 - 239
  • [14] Performance simulations of optical multi-chip-module interconnects: Comparing guided-wave and free-space pathways.
    Baukens, V
    Verschaffelt, G
    Tuteleers, P
    Vynck, P
    Ottevaere, H
    Kufner, M
    Kufner, S
    Veretennicoff, I
    Bockstaele, R
    Dhoedt, B
    Baets, R
    Thienpont, H
    OPTICS IN COMPUTING 98, 1998, 3490 : 412 - 415
  • [15] Photorefractive beam splitter for free-space optical interconnections
    Gardner, DS
    Marchand, PJ
    Harvey, P
    Hendrick, WL
    Esener, SC
    APPLIED OPTICS, 1998, 37 (26): : 6178 - 6181
  • [16] Power minimization and technology comparisons for digital free-space optoelectronic interconnections
    Kibar, O
    Van Blerkom, DA
    Fan, C
    Esener, SC
    JOURNAL OF LIGHTWAVE TECHNOLOGY, 1999, 17 (04) : 546 - 555
  • [17] SPECTRAL PROCESSOR IMPLEMENTED WITH HYBRID FREE-SPACE AND GUIDED-WAVE OPTICS AND ACTIVE LCOS MODULATOR
    Sinefeld, David
    Marom, Dan M.
    2008 IEEE 25TH CONVENTION OF ELECTRICAL AND ELECTRONICS ENGINEERS IN ISRAEL, VOLS 1 AND 2, 2008, : 380 - 383
  • [18] Multifunctional Metasurface for Simultaneous Light Manipulation under Both Guided-Wave and Free-Space Incidence
    Li, Wenwen
    Zhou, Yucong
    Ye, Chao
    Yan, Dukang
    Xiong, Bo
    Gao, Han
    Chu, Tao
    Ma, Wei
    ACS PHOTONICS, 2024, 11 (04) : 1724 - 1733
  • [19] PROGRAMMABLE OPTICAL LOGIC SYSTEMS USING FREE-SPACE OPTICAL INTERCONNECTIONS
    DAVIS, JA
    TIANGCO, RP
    BARNES, TH
    HASKELL, TG
    APPLIED OPTICS, 1995, 34 (11): : 1929 - 1937
  • [20] Self-alignment with optical microconnectors for free-space optical interconnections
    Miyazaki, D
    Masuda, S
    Matsushita, K
    APPLIED OPTICS, 1998, 37 (02): : 228 - 232