• Acta Photonica Sinica
  • Vol. 50, Issue 7, 182 (2021)
Qian LIU and Jianqi SHEN
Author Affiliations
  • College of Science, University of Shanghai for Science and Technology, Shanghai200093, China
  • show less
    DOI: 10.3788/gzxb20215007.0729002 Cite this Article
    Qian LIU, Jianqi SHEN. Effect of Resonant Scattering on Photonic Jet of a Microsphere[J]. Acta Photonica Sinica, 2021, 50(7): 182 Copy Citation Text show less
    References

    [1] S LECLER, Y TAKAKURA, P MEYRUEIS. Properties of a three-dimensional photonic jet. Optics Letters, 30, 2641-2643(2005).

    [2] Y E GEINTS, A A ZEMLYANOV, E K PANINA. Photonic jets from resonantly excited transparent dielectric microspheres. The Journal of the Optical Society of America B, 29, 758-762(2012).

    [3] B S LUK’YANCHUK, R PANIAGUA-DOMÍNGUEZ, I MININ et al. Refractive index less than two: photonic nanojets yesterday, today and tomorrow. Optical Materials Express, 7, 1820-1847(2017).

    [4] Y E GEINTS, E K PANINA, A A ZEMLYANOV. Photonic jet shaping of mesoscale dielectric spherical particles: resonant and non-resonant jet formation. Journal of Quantitative Spectroscopy and Radiative Transfer, 126, 44-49(2013).

    [5] Zhigang CHEN, A TAFLOVE, V BACKMAN. Photonic nanojet enhancement of backscattering of light by nanoparticles: a potential novel visible-light ultramicroscopy technique. Optics Express, 12, 1214-1220(2004).

    [6] A HEIFETZ, S C KONG, A V SAHAKIAN et al. Photonic nanojets. Journal of Computational and Theoretical Nanoscience, 6, 1979-1992(2009).

    [7] M S KIM, T SCHARF, S MÜHLIG et al. Engineering photonic nanojets. Optics Express, 19, 10206-10220(2011).

    [8] Y É GEINTS, A A ZEMLYANOV, E K PANINA. Nanophotonics of isolated spherical particles. Russian Physics Journal, 53, 410-420(2010).

    [9] Li XU, Zhigang CHEN, A TAFLOVE et al. Optical analysis of nanoparticles via enhanced backscattering facilitated by 3-D photonic nanojets. Optics Express, 13, 526-533(2005).

    [10] E MCLEOD, C B ARNOLD. Subwavelength direct-write nanopatterning using optically trapped microspheres. Nature Nanotechnology, 3, 413-417(2008).

    [11] J KIM, I KIM et al. Fabrication of plasmonic nanodiscs by photonic nanojet lithography. Applied Physics Express, 5(2012).

    [12] X A ZHANG, I T CHEN, C H CHANG. Recent progress in near-field nanolithography using light interactions with colloidal particles: from nanospheres to three-dimensional nanostructures. Nanotechnology, 30, 352002(2019).

    [13] I V MININ, Chengyang LIU, Y E GEINTS et al. Recent advances in integrated photonic jet-based photonics, 7, 41(2020).

    [14] Xixi CHEN, Tian WU, Yonggong ZHI et al. Subwavelength imaging and detection using adjustable and movable droplet microlenses. Photonics Research, 8, 225-234(2020).

    [15] Bing YAN, Liyang YUE, J N MONKS et al. Superlensing plano-convex-microsphere (PCM) lens for direct laser nano-marking and beyond. Optics Letters, 45, 1168-1171(2020).

    [16] V ASTRATOV. Label-free super-resolution microscopy. Springer, 407-436(2019).

    [17] S LECLER, S PERRIN, A LEONG-HOI et al. Photonic jet lens. Scientific Reports, 9, 1-8(2019).

    [18] Yubo DUAN, G BARBASTATHIS, Baile ZHANG. Classical imaging theory of a microlens with super-resolution. Optics Letters, 38, 2988-2990(2013).

    [19] R HEYDARIAN, C R SIMOVSKI. The role of normal polarization in far-field subwavelength imaging by a dielectric microsphere or microcylinder. Journal of Optics, 22(2020).

    [20] Song ZHOU, Teng ZHOU. An ultra-narrow photonic nanojet generated from a high refractive-index micro-flat-ended cylinder. Applied Physics Express, 13(2020).

    [21] Zhishen ZHEN, Yin HUANG, Yuanhua FENG et al. An ultranarrow photonic nanojet formed by an engineered two-layer microcylinder of high refractive-index materials. Optics Express, 27, 9178-9188(2019).

    [22] T UENOHARA, Y MIZUTANI, Y TAKAYA. Comparison of intensity distribution of photonic nanojet according to Gaussian beam and radially polarization beam incidence. Precision Engineering, 60, 274-279(2019).

    [23] A MANDAL, V R DANTHAM. Short and elongated photonic nanojets emerged from single solid/hollow core-shell microparticles illuminated by focused Gaussian beams and plane wave. Journal of Quantitative Spectroscopy and Radiative Transfer, 257, 107350(2020).

    [24] A MANDAL, V R DANTHAM. Photonic nanojets generated by single microspheres of various sizes illuminated by resonant and non-resonant focused Gaussian beams of different waists. The Journal of the Optical Society of America B, 37, 977-986(2020).

    [25] V R DANTHAM, P B BISHT, C K R NAMBOODIRI. Enhancement of Raman scattering by two orders of magnitude using photonic nanojet of a microsphere. Journal of Applied Physics, 109, 103103(2011).

    [26] I MAHARIQ, A S ABDELJAWAD T KARAR et al. Photonic nanojets and whispering gallery modes in smooth and corrugated micro-cylinders under point-source illumination, 7, 50(2020).

    [27] Liyang YUE, Zengbo WANG, Bing YAN et al. Super‐enhancement focusing of teflon spheres. Annalen der Physik, 532, 2000373(2020).

    [28] I MAHARIQ, H KURT. On-and off-optical-resonance dynamics of dielectric microcylinders under plane wave illumination. Journal of the Optical Society of America B, 32, 1022-1030(2015).

    [29] I MAHARIQ, H KURT. Strong field enhancement of resonance modes in dielectric microcylinders. Journal of the Optical Society of America B, 33, 656-662(2016).

    [30] S LEE, Lin LI, Zengbo WANG. Optical resonances in microsphere photonic nanojets. Journal of Optics, 16, 5704(2014).

    [31] C F BOHREN, D R HUFFMAN. Absorption and scattering of light by small particles(2008).

    [32] V TWERSKY. Light scattering by small particles. Physics Today, 10, 28-30(1957).

    [33] P CHýLEK. Resonance structure of Mie scattering: distance between resonances. Journal of the Optical Society of America A, 7, 1609-1613(1990).

    [34] P T LEUNG, K YOUNG. Explicit asymptotic formulas for the positions, widths, and strengths of resonances in Mie scattering. The Journal of the Optical Society of America B, 9, 1585-1592(1992).

    [35] C L ADLER, J A LOCK, B R STONE et al. High-order interior caustics produced in scattering of a diagonally incident plane wave by a circular cylinder. Journal of the Optical Society of America A, 14, 1305-1315(1997).

    [36] P DEBYE. Das elektromagnetische feld um einen Zylinder und die theorie des regenbogens. Physik Zeit, 9, M-778(1908).

    [37] Jianqi SHEN, Huaru WANG. Calculation of Debye series expansion of light scattering. Applied Optics, 49, 2422-2428(2010).

    Qian LIU, Jianqi SHEN. Effect of Resonant Scattering on Photonic Jet of a Microsphere[J]. Acta Photonica Sinica, 2021, 50(7): 182
    Download Citation