Acta Photonica Sinica, Volume. 53, Issue 1, 0106001(2024)
A Helical Multicore Optical Fiber Design for Coherent Imaging
[1] KINO G S, WANG T D, CONTAG C H et al. Performance of dual axes confocal microscope for in vivo molecular and cellular imaging[C], 5324, 35-46(2004).
[2] CARLSON K, CHIDLEY M, SUNG K B et al. In vivo fiber-optic confocal reflectance microscope with an injection-molded plastic miniature objective lens[J]. Applied Optics, 44, 1792-1797(2005).
[3] GÖBEL W, KERR J N D, NIMMERJAHN A et al. Miniaturized two-photon microscope based on a flexible coherent fiber bundle and a gradient-index lens objective[J]. Optics Letters, 29, 2521-2523(2004).
[4] ROUSE A R, KANO A, UDOVICH J A et al. Design and demonstration of a miniature catheter for a confocal microendoscope[J]. Applied Optics, 43, 5763-5771(2004).
[5] YANG L, RAIGHNE AMAC, MCCABE E M et al. Confocal microscopy using variable-focal-length microlenses and an optical fiber bundle[J]. Applied Optics, 44, 5928-5936(2005).
[6] ZHOU Y, XIONG B, SONG W et al. Light-field micro-endoscopy using a fiber bundle: a snapshot 3D epi-fluorescence endoscope[J]. Photonics Research, 10, 2247-2260(2022).
[7] PLÖSCHNER M, TYC T, ČIŽMÁR T. Seeing through chaos in multimode fibres[J]. Nature Photonics, 9, 529-535(2015).
[8] GORDON G S D, GATARIC M, RAMOS A G C P et al. Characterizing optical fiber transmission matrices using metasurface reflector stacks for lensless imaging without distal access[J]. Physical Review X, 9, 041050(2019).
[9] CHOI W, KANG M, HONG J H et al. Fourier holographic endoscopy for label-free imaging through a narrow and curved passage[J], 2020.
[10] KUSCHMIERZ R, SCHARF E, KOUKOURAKIS N et al. Self-calibration of lensless holographic endoscope using programmable guide stars[J]. Optics Letters, 43, 2997-3000(2018).
[11] SCHARF E, KUSCHMIERZ R, CZARSKE J. Holographic lensless fiber endoscope with needle size using self-calibration[J]. tm-Technisches Messen, 86, 144-150(2019).
[12] ROPER J C. Advances in multicore optical fibres for endoscopy[D](2015).
[13] TSVIRKUN V, SIVANKUTTY S, BAUDELLE K et al. Flexible lensless endoscope with a conformationally invariant multi-core fiber[J]. Optica, 6, 1185-1189(2019).
[14] SAAR B G, JOHNSTON R S, FREUDIGER C W et al. Coherent Raman scanning fiber endoscopy[J]. Optics Letters, 36, 2396-2398(2011).
[15] FREUDIGER C W, MIN W, SAAR B G et al. Label-free biomedical imaging with high sensitivity by stimulated Raman scattering microscopy[J]. Science, 322, 1857-1861(2008).
[16] EVANS C L, XIE X S. Coherent anti-stokes Raman scattering microscopy: chemical imaging for biology and medicine[J]. Annual Review of Analytical Chemistry, 1, 883-909(2008).
[17] NICOLET A, ZOLLA F, AGHA Y O et al. Leaky modes in twisted microstructured optical fibers[J]. Waves in Random and Complex Media, 17, 559-570(2007).
[18] SCHURIG D, PENDRY J B, SMITH D R. Calculation of material properties and ray tracing in transformation media[J]. Optics Express, 14, 9794-9804(2006).
[19] KOSHIBA M, SAITOH K, TAKENAGA K et al. Analytical expression of average power-coupling coefficients for estimating intercore crosstalk in multicore fibers[J]. IEEE Photonics Journal, 4, 1987-1995(2012).
[20] TU Jiajing, LI Chaohui. Review of space division multiplexing fiber research[J]. Acta Optic Sinica, 41, 0106003(2021).
[21] XIE Y, PEI L, ZHENG J et al. Low-dmd and low-crosstalk few-mode multi-core fiber with air-trench/holes assisted graded-index profile[J]. Optics Communications, 474, 126155(2020).
[22] FINI J M, ZHU B, TAUNAY T F et al. Statistics of crosstalk in bent multicore fibers[J]. Optics Express, 18, 15122-15129(2010).
Get Citation
Copy Citation Text
Jinhu ZHENG, Bingshen XU, Henan SHEN, Fei YU, Jian CHEN. A Helical Multicore Optical Fiber Design for Coherent Imaging[J]. Acta Photonica Sinica, 2024, 53(1): 0106001
Category: Fiber Optics and Optical Communications
Received: May. 22, 2023
Accepted: Sep. 4, 2023
Published Online: Feb. 1, 2024
The Author Email: Fei YU (yufei@siom.ac.cn)