|
|
|
Список литературы
|
|
|
1. |
Wielicki BA, Barkstrom BR, Baum BA, Charlock TP, Green RN, Kratz DP, Lee RB, Minnis P, Smith GL, Wong T, Young DF, Cess RD, Coakley JA, Crommelynck AH, Donner L, Kandel R, King MD, Miller AJ, Ramanathan V, Radall DA, Stowe LL, Welch RM, “Clouds and Earth's radiant energy system (CERES): Algorism overview”, IEEE Trans Geosci Remote Sensing, 36:4 (1998), 1127–1141 |
2. |
Panchenko MV, Kabanov MV, Pkhalagov YuA, Belan BD, Kozlov VS, Sakerin SM, Kabanov DM, Uzhegov VN, Shchelkanov NN, Polkin VV, Terpugova SA, Tolmachev GN, Yausheva EP, Arshinov MYu, Simonenkov DV, Shmargunov VP, Chernov DG, Turchinovich YuS, Pol'kin VV, Zhuravleva TB, Nasrtdinov IM, Zenkova PN, “Integrated studies of tropospheric aerosol at the institute of atmospheric optics (development stages)”, Atmospheric Ocean Opt, 33:01 (2020), 27–41 |
3. |
Pan YL, Aptowicz KB, Chang RK, Hart M, Eversole JD, “Characterizing and monitoring respiratory aerosols by light scattering”, Opt Lett, 28:8 (2003), 589–591 |
4. |
Zenkova PN, Chernov DG, Shmargunov VP, Panchenko MV, Belan BD, “Submicron aerosol and absorbing substance in the troposphere of the russian sector of the arctic according to measurements onboard the Tu-134 Optik Aircraft Laboratory in 2020”, Atmospheric Ocean Opt, 35:1 (2022), 43–51 |
5. |
Chen Z, Taflove A, Backman V, “Photonic nanojet enhancement of backscattering of light by nanoparticles: a potential novel visible-light ultramicroscopy technique”, Opt Express, 12:7 (2004), 1214–1220 |
6. |
Li X, Chen Z, Taflove A, Backman V, “Optical analysis of nanoparticles via enhanced backscattering facilitated by 3-D photonic nanojets”, Opt Express, 13:2 (2005), 526–533 |
7. |
Kato S, Chonan S, Aoki T, “High-numerical-aperture microlensed tip on an air-clad optical fiber”, Opt Lett, 39:4 (2014), 773–776 |
8. |
Liu C, Ye A, “Microsphere assisted optical super-resolution imaging with narrowband illumination”, Optics Communications, 485 (2021), 126658 |
9. |
Assafrao AC, Kumar N, Wachters AJH, Pereira SF, Urbach HP, Brun M, Segolene O, “Application of micro solid immersion lens as probe for near-field scanning microscopy”, Appl Phys Lett, 104:10 (2014), 101101 |
10. |
Cui X, Erni D, Hafner C, “Optical forces on metallic nanoparticles induced by a photonic nanojet”, Opt Express, 16:18 (2008), 13560–13568 |
11. |
Zaitsev VD, Stafeev SS, “Photonic jets arrays produced by triangular dielectric prisms for Mid-IR imaging”, Photonics & Electromagnetics Research Symposium – Spring (PIERS–SPRING), 2020, 2610–2614 |
12. |
Geints YuE, Zemlyanov AA, Panina EK, “Microaxicon-generated photonic nanojets”, J Opt Soc Am B, 32:8 (2015), 1570–1574 |
13. |
Geints YuE, Zemlyanov AA, Minin OV, Minin IV, “Systematic study and comparison of photonic nanojets produced by dielectric microparticles in 2D- and 3D-spatial configurations”, J Opt, 20:6 (2018), 065606 |
14. |
Chen Z, Taflove A, Backman V, “Photonic nanojet enhancement of backscattering of light by nanoparticles: a potential novel visible-light ultramicroscopy technique”, Opt Express, 12:7 (2004), 1214–1220 |
15. |
Geints YuE, Panina EK, Zemlyanov AA, “Control over parameters of photon nanojets of dielectric microspheres”, Opt Commun, 283:23 (2010), 4775–4781 |
16. |
Geints YuE, Minin IV, Panina EK, Zemlyanov AA, Minin OV, “Comparison of photonic nanojets key parameters produced by nonspherical microparticles”, Opt Quantum Electron, 49:3 (2017), 118 |
17. |
Mandal A, Tiwari P, Upputuri PK, Dantham VR, “Characteristic parameters of photonic nanojets of single dielectric microspheres illuminated by focused broadband radiation”, Sci Rep, 12:1 (2022), 173 |
18. |
Geints YuE, Zemlyanov AA, Panina EK, “Photonic jets from resonantly-excited transparent dielectric microspheres”, J Opt Soc Am B, 29:4 (2012), 758–762 |
19. |
Devilez A, Bonod N, Stout B, Gerard D, Wenger J, Rigneault H, Popov E, “Three-dimensional subwavelength confinement of light with dielectric microspheres”, Opt Express, 17:4 (2009), 2089–2094 |
20. |
Lecler S, Takakura Y, Meyrueis P, “Properties of a three-dimensional photonic jet”, Opt Lett, 30:19 (2005), 2641–2643 |
21. |
Itagi AV, Challener WA, “Optics of photonic nanojets”, J Opt Soc Am A, 22:12 (2005), 2847–2858 |
22. |
Abdurrochman A, Lecler S, Mermet F, Tumbelaka BY, Serio B, Fontaine J, “Photonic jet breakthrough for direct laser microetching using nanosecond near-infrared laser”, Appl Opt, 53:31 (2014), 7202–7207 |
23. |
Astratov VN, Darafsheh A, Kerr MD, Allen KW, Fried NM, Antoszyk AN, Ying HS, Photonic nanojets for laser surgery, SPIE Newsroom, 2010 https://spie.org/news/2578-photonic-nanojets-for-laser-surgery<nobr>${?$SSO${=}$1} |
24. |
Terakawa M, Tanaka Y, “Dielectric microsphere mediated transfection using a femtosecond laser”, Opt Lett, 36:15 (2011), 2877–2879 |
25. |
Garces-Chavez V, McGloin D, Melville H, Sibbett W, Dholakia K, “Simultaneous micromanipulation in multiple planes using a self-reconstructing light beam”, Nature, 419:6903 (2002), 145–147 |
26. |
Zhou Zz, Ali H, Hou Zs, Hue W, Cao Y, “Enhanced photonic nanojets for submicron patterning”, J Cent South Univ, 29:6 (2022), 3323–3334 |
27. |
Lia C, Kattawara GW, Yangb P, “Effects of surface roughness on light scattering by small particles”, J Quant Spectrosc Radiat Transf, 89:1–4 (2004), 123–131 |
28. |
Sun W, Nousiainen T, Muinonen K, Fu Q, Loeb NG, Videen G, “Light scattering by Gaussian particles: a solution with finite-difference time domain technique”, J Quant Spectrosc Radiat Transf, 79–80 (2003), 1083–1090 |
29. |
Li C, Kattawara GW, Yang P, “Effects of surface roughness on light scattering by small particles”, J Quant Spectrosc Radiat Transf, 89:1–4 (2004), 123–131 |
30. |
Mahariq I, Astratov VN, Kurt H, “Persistence of photonic nanojet formation under the deformation of circular boundary”, J Opt Soc Am B, 33:4 (2016), 535–542 |
31. |
Mahariq I, Abdeljawad T, Karar AS, Alboon SA, Kurt H, Maslov AV, “Photonic nanojets and whispering gallery modes in smooth and corrugated micro-cylinders under point-source illumination”, Photonics, 7:3 (2020), 50 |
32. |
Luk'yanchuk BS, Paniagua-Domínguez R, Minin IV, Minin OV, Wang Z, “Refractive index less than two: photonic nanojets yesterday, today and tomorrow [Invited]”, Opt Mater Express, 7:6 (2017), 1820–1847 |
33. |
Geints YuE, Zemlyanov AA, Pal'chikov AV, “Influence of droplet surface deformations on stimulated Raman scattering of light”, Atmospheric Ocean Opt, 10:12 (1997), 974–978 |