• Optoelectronics Letters
  • Vol. 21, Issue 2, 65 (2025)
Jingzhong GUO, Feng LAN, Xiang CHEN, and Haifeng LIU
DOI: 10.1007/s11801-025-3287-6 Cite this Article
GUO Jingzhong, LAN Feng, CHEN Xiang, LIU Haifeng. Laser image refractive index sensor based on the combination of a coreless optical fiber and a digital camera[J]. Optoelectronics Letters, 2025, 21(2): 65 Copy Citation Text show less
References

[1] CARVER C J, TIAN Z, ZHANG H, et al. Amphilight: direct air-water communication with laser light[J]. GetMobile: mobile computing and communications,2021, 24(3): 26-29.

[2] GAO D, XIE Z, MA R, et al. Development current status and trend analysis of satellite laser communication[J]. Acta photonica sinica, 2021, 50(4): 0406001.

[3] GAO S H J, WU J B, LIU Y K, et al. Development status and trend of micro-satellite laser communication systems[J]. Chinese optics, 2020, 13(6): 1171-1181.

[4] TOYOSHIMA M. Recent trends in space laser communications for small satellites and constellations[J]. Journal of lightwave technology, 2021, 39(3): 693-699.

[5] NGUYEN L V, NGUYEN C C, CARNEIRO G, et al. Sensing in the presence of strong noise by deep learning of dynamic multimode fiber interference[J]. Photonics research, 2021, 9(4): B109-B118.

[6] SINGH N, HAMEED P, UMMETHALA R, et al. Selective laser manufacturing of Ti-based alloys and composites: impact of process parameters, application trends, and future prospects[J]. Materials today advances, 2020, 8: 100097.

[7] TAN C, WENG F, SUI S, et al. Progress and perspectives in laser additive manufacturing of key aeroengine materials[J]. International journal of machine tools and manufacture, 2021, 170: 103804.

[8] LIN T C, CAO C, SOKOLUK M, et al. Aluminum with dispersed nanoparticles by laser additive manufacturing[J]. Nature communications, 2019, 10(1): 4124.

[9] TENG M, HONARDOOST A, ALAHMADI Y, et al. Miniaturized silicon photonics devices for integrated optical signal processors[J]. Journal of lightwave technology, 2019, 38(1): 6-17.

[10] TAN M, XU X, WU J, et al. Ultra-high bandwidth radio frequency and microwave photonic signal processing based on Kerr micro-combs[J]. Advances in physics X,2021, 6(1): 1838946.

[11] JAHID A, ALSHARIF M H, HALL T J. A contemporary survey on free space optical communication: potentials, technical challenges, recent advances and research direction[J]. Journal of network and computer applications, 2022, 200: 103311.

[12] VENU D, MAYURI A V R, NEELAKANDAN S, et al. An efficient low complexity compression based optimal homomorphic encryption for secure fiber optic communication[J]. Optik, 2022, 252: 168545.

[13] LI Y, IBANEZ-GUZMAN J. Lidar for autonomous driving: the principles, challenges, and trends for automotive lidar and perception systems[J]. IEEE signal processing magazine, 2020, 37(4): 50-61.

[14] HEEMAN W, STEENBERGEN W, VAN DAM G M, et al. Clinical applications of laser speckle contrast imaging: a review[J]. Journal of biomedical optics, 2019, 24(8): 080901-080901.

[15] MA D, LI J K, FENG Q, et al. Method and system for simultaneously measuring six degrees of freedom motion errors of a rotary axis based on a semiconductor laser[J]. Optics express, 2023, 31(15): 24127-24141.

[16] PEI S, CHARI P, WANG X, et al. Forcesight: non-contact force sensing with laser speckle imaging[C]//The 35th Annual ACM Symposium on User Interface Software and Technology, October 29-November 2, 2022, Bend, OR, USA. New York: ACM, 2022: 1-11.

[17] PANG Y, LINGAMANAIK S N, CHEN B K, et al. Measurement of deformation of the concrete sleepers under different support conditions using non-contact laser speckle imaging sensor[J]. Engineering structures,2020, 205: 110054.

[18] PANG Y, CHEN B K, LIU W, et al. Development of a non-contact and non-destructive laser speckle imaging system for remote sensing of anisotropic deformation around fastener holes[J]. NDT & E international, 2020, 111: 102219.

[19] CESTER L, STARSHYNOV I, JONES Y, et al. Remote laser-speckle sensing of heart sounds for health assessment and biometric identification[J]. Biomedical optics express, 2022, 13(7): 3743-3750.

[20] DOGAN M D, ACEVEDO COLON S V, SINHA V, et al. Sensicut: material-aware laser cutting using speckle sensing and deep learning[C]//The 34th Annual ACM Symposium on User Interface Software and Technology, October 10-14, 2021, Virtual. New York: ACM,2021: 24-38.

GUO Jingzhong, LAN Feng, CHEN Xiang, LIU Haifeng. Laser image refractive index sensor based on the combination of a coreless optical fiber and a digital camera[J]. Optoelectronics Letters, 2025, 21(2): 65
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