Photonic lanterns

被引:133
作者
Leon-Saval, Sergio G. [1 ]
Argyros, Alexander [1 ]
Bland-Hawthorn, Joss [1 ]
机构
[1] Univ Sydney, Sch Phys, Inst Photon & Opt Sci, Sydney, NSW 2006, Australia
关键词
photonic lantern; multimode optical fibers; optical fiber tapers; astrophotonics; multicore fibers; spatial division multiplexing (SDM); mode-multiplexer; spectroscopy; spectrographs; surface plasmons; DIVISION MULTIPLEXED TRANSMISSION; FIBER BRAGG GRATINGS; SINGLE-MODE FIBERS; OPTICAL-FIBERS; WAVE-GUIDES; MULTIMODE; LIGHT; SPACE; PROPAGATION; STARLIGHT;
D O I
10.1515/nanoph-2013-0035
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Multimode optical fibers have been primarily (and almost solely) used as "light pipes" in short distance telecommunications and in remote and astronomical spectroscopy. The modal properties of the multimode waveguides are rarely exploited and mostly discussed in the context of guiding light. Until recently, most photonic applications in the applied sciences have arisen from developments in telecommunications. However, the photonic lantern is one of several devices that arose to solve problems in astrophotonics and space photonics. Interestingly, these devices are now being explored for use in telecommunications and are likely to find commercial use in the next few years, particularly in the development of compact spectrographs. Photonic lanterns allow for a low-loss transformation of a multimode waveguide into a discrete number of single-mode waveguides and vice versa, thus enabling the use of single-mode photonic technologies in multimode systems. In this review, we will discuss the theory and function of the photonic lantern, along with several different variants of the technology. We will also discuss some of its applications in more detail. Furthermore, we foreshadow future applications of this technology to the field of nanophotonics.
引用
收藏
页码:429 / 440
页数:12
相关论文
共 64 条
[11]  
Bland-Hawthorn J, 2012, P GROUND BASED AIRBO, V7735
[12]   Molding the flow of light: Photonics in astronomy [J].
Bland-Hawthorn, Joss ;
Kern, Pierre .
PHYSICS TODAY, 2012, 65 (05) :31-37
[13]   Terabit-Scale Orbital Angular Momentum Mode Division Multiplexing in Fibers [J].
Bozinovic, Nenad ;
Yue, Yang ;
Ren, Yongxiong ;
Tur, Moshe ;
Kristensen, Poul ;
Huang, Hao ;
Willner, Alan E. ;
Ramachandran, Siddharth .
SCIENCE, 2013, 340 (6140) :1545-1548
[14]   Optical-Mode Demultiplexing by Optical MIMO Filtering of Spatial Samples [J].
Buelow, Henning .
IEEE PHOTONICS TECHNOLOGY LETTERS, 2012, 24 (12) :1045-1047
[15]  
Bulow H, 2011, EUR C OPT COMM ECOC
[16]  
Chralyvy A., 2009, ECOC 2009, P1
[17]  
Connes P, 1996, P INT OPT ASTR INT G, P122
[18]  
Connes P., 1988, in European Southern Observatory Conference and Workshop Proceedings, V29, P1117
[19]   First starlight spectrum captured using an integrated photonic micro-spectrograph [J].
Cvetojevic, N. ;
Jovanovic, N. ;
Betters, C. ;
Lawrence, J. S. ;
Ellis, S. C. ;
Robertson, G. ;
Bland-Hawthorn, J. .
ASTRONOMY & ASTROPHYSICS, 2012, 544
[20]   Developing arrayed waveguide grating spectrographs for multi-object astronomical spectroscopy [J].
Cvetojevic, Nick ;
Jovanovic, Nemanja ;
Lawrence, Jon ;
Withford, Michael ;
Bland-Hawthorn, Joss .
OPTICS EXPRESS, 2012, 20 (03) :2062-2072