Exclusive: Science and Technology Review in 2022

Memorable sounds of optics and photonics in 2022

  • ZHU Haidong ,
  • XUE hao ,
  • XIE Xinglong ,
  • ZHU Jianqiang
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  • National Laboratory on High Power Laser and Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China

Received date: 2023-01-02

  Revised date: 2023-01-10

  Online published: 2023-02-10

Abstract

Optics and photonics has penetrated into all aspects of people's life since the birth of laser. This article starts with the 2022 major progress in the field of optics and photonics and draws up an inventory in the future in ten optical research directions. The related research may likely have enormous impact on human existence and way of life in the future.

Cite this article

ZHU Haidong , XUE hao , XIE Xinglong , ZHU Jianqiang . Memorable sounds of optics and photonics in 2022[J]. Science & Technology Review, 2023 , 41(1) : 30 -65 . DOI: 10.3981/j.issn.1000-7857.2023.01.003

References

[1] A shot for the ages:Fusion ignition breakthrough hailed as ‘one of the most impressive scientific feats of the 21st century’[EB/OL].[2022-12-14](2022-12-25).https://www.llnl.gov/news/shot-ages-fusion-ignition-breakthroughhailed-one-most-impressive-scientific-feats-21st.
[2] Hsiang E L, He Z Q, Yang Z Y, et al.Tailoring the light distribution of micro-LED displays with a compact compound parabolic concentrator and an engineered diffusor[J].Optics Express, 2021, 29(24):39859-39873.
[3] Chang J, Los J W N, Gourgues R, et al.Efficient mid-infrared single-photon detection using superconducting NbTiN nanowires with high time resolution in a Gifford-McMahon cryocooler[J].Photonics Research, 2022, 10(4):1063-1070.
[4] Wu T F, Yang F, Cao T, et al.Modeling of ultraviolet propagation from air to human epidermis with wavelength range of 200-300 nm[J].Optics Letters, 2022, 47(7):1662-1665.
[5] Huang J Z, Ji Z T, Chen J J, et al.Ultra-broadband flattop quantum dot comb lasers[J].Photonics Research, 2022, 10(5):1308-1316.
[6] Guo X W, Shao L B, He L Y, et al.High-performance modified uni-traveling carrier photodiode integrated on a thin-film lithium niobate platform[J].Photonics Research, 2022, 10(6):1338-1343.
[7] Zhang S, Mu G, Cao J, et al.Single-/fused-band dualmode mid-infrared imaging with colloidal quantum-dot triple-junctions[J].Photonics Research, 2022, 10(8):1987-1995.
[8] Kuo W K, Lin J X, Tongpakpanang J, et al.Guidedmode resonance pressure sensor based on a stretchable low-density polyethylene film[J].Applied Optics, 2022, 61(21):6223-6227.
[9] Latas S C, Ferreira M F S.Collisions of creeping solitons[J].Journal of the Optical Society of America B, 2022, 39:3035-3040.
[10] Gao H R, Guo R X, Zhang S J, et al.Mid-infrared polarization-insensitive grating coupler[J].Optics Letters, 2022, 47(20):5381-5384.
[11] Shu H W, Chang L, Tao Y S, et al.Microcomb-driven silicon photonic systems[J].Nature, 2022, 605:457-463.
[12] Wu D, Jiang Y F, Gu X M, et al.Experimental refutation of real-valued quantum mechanics under strict locality conditions[J].Physical Review Letters, 2022, 129:140401.
[13] Zhang X, Liu Y, Han J, et al.Chiral emission from resonant metasurfaces[J].Science, 2022, 377(6611):1215-d:PDF.pdf1218.
[14] Weng X, Miao Y, Wang G, et al.Propagable optical vortices with natural noninteger orbital angular momentum in free space[J].Advanced Photonics Research, 2022:2200094.
[15] Wang S, Yin Z Q, He D Y, et al.Twin-field quantum key distribution over 830-km fiber[J].Nature Photonics, 2022, 16:154-161.
[16] Tu H T, Liao K Y, Zhang Z X, et al.High-efficiency coherent microwave-to-optics conversion via off-resonant scattering[J].Nature Photonics, 2022, 16:291-296.
[17] Singh M R, Parihar S, Yastrebov S, et al.Photocurrent in plasmonic nanofibers[J].Journal of the Optical Society of America B, 2022, 39:248-257.
[18] Wang X H, Jia K P, Chen M W, et al.2μm optical frequency comb generation via optical parametric oscillation from a lithium niobate optical superlattice box resonator[J].Photonics Research, 2022, 10:509-515.
[19] Kawaguchi Y, Alù A, Khanikaev A B, et al.Non-reciprocal parity-time symmetry breaking based on magnetooptical and gain/loss double ring resonators[J].Optical Materials Express, 2022, 12(4):1453-1460.
[20] Jiang N B, Grib S W, Hsu P S, et al.High-repetitionrate krypton tagging velocimetry in Mach-6 hypersonic flows[J].Applied Optics, 2022, 61(9):2192-2197.
[21] Zhang J D, Li C, Wang S.Nonlinear phase estimation via nonlinear-linear hybrid interferometers[J].Journal of the Optical Society of America B, 2022, 39(5):1323-d:PDF.pdf1328.
[22] Gao F, Zhang Z, Xu Y F, et al.Deep-learning-assisted designing chiral terahertz metamaterials with asymmetric transmission properties[J].Journal of the Optical Society of America B, 2022, 39:1511-1519.
[23] Zhang C L, Liu Z W, Cai C, et al.Surface plasmon resonance gas sensor with a nanoporous gold film[J], Optics Letters, 2022, 47:4155-4158.
[24] Shameli M A, Salami P, Yousefi L.Thermal insulator film with transparency to visible light using metallic nano-spheres[J].Journal of the Optical Society of America B, 2022, 39:2760-2768.
[25] Zhou Y, Xu X H, Zhang Y N, et al.Observation of highorder imaginary Poynting momentum optomechanics in structured light[J].Proceedings of the National Academy of Sciences, 2022, 119(44):e2209721119.
[26] Lin S, He Y, Feng D, et al.Optical fingerprint of flat substrate surface and marker-free lateral displacement detection with Angstrom-level precision[J].Physical Review Letters, 2022, 129(21):213201.
[27] Sun S H, He M B, Xu M Y, et al.Bias-drift-free MachZehnder modulators based on a heterogeneous silicon and lithium niobate platform[J].Photonics Research, 2022, 8:1958-1963.
[28] Jin F, Liu J, Zhao Y Y, et al.λ/30 inorganic features achieved by multi-photon 3D lithography[J].Nature Communication, 2022, 13:1357.
[29] Sun K, Tan D Z, Fang X Y, et al.Three-dimensional direct lithography of stable perovskite nanocrystals in glass[J].Science, 2022, 375(6578):307-310.
[30] Yue S, Tian F, Sun X Y, et al.High ambipolar mobility in cubic boron arsenide revealed by transient reflectivity microscopy[J].Science, 2022, 377(6604):433-436.
[31] Liu S F, Hou Z W, Lin L H, et al.3D nanoprinting of semiconductor quantum dots by photoexcitation-induced chemical bonding[J].Science, 2022, 377(6610):1112-d:PDF.pdf1116.
[32] Zheng Z G, Hu H L, Zhang Z P, et al.Digital photo programming of liquid-crystal superstructures featuring intrinsic chiral photoswitches[J].Nature Photonics, 2022, 16:226-234.
[33] Zhang S F, Huang L L, Geng G Z, et al.Full-Stokes polarization transformations and time sequence metasurface holographic display[J].Photonics Research, 2022, 10(4):1031-1038.
[34] Wang X G, Zhang Y Q, Wang X Z.Spatial shifts of reflected beams from surface polaritons in antiferromagnets[J].Journal of the Optical Society of America B, 2022, 39(4):1010-1020
[35] Yessenov M, Chen Z Z, Lavery M P J, et al.Vector space-time wave packets[J].Optics Letters, 2022, 47:4131-4134.
[36] Kornienko V, Andersson D, Stiti M, et al.Simultaneous multiple time scale imaging for kHz-MHz high-speed accelerometry[J].Photonics Research, 2022, 10:1712-d:PDF.pdf1722.
[37] Shi J Y, Xu Z Y, Niu W Q, et al.Si-substrate verticalstructure InGaN/GaN micro-LED-based photodetector for beyond 10 Gbps visible light communication[J].Photonics Research, 2022, 10:2394-2404.
[38] Kulkarni P P, Bao Y J, Gaylord T K.Annular illumination in 2D quantitative phase imaging:A systematic evaluation[J].Applied Optics, 2022, 61(12):3409-3418
[39] Messinis C, Adhikary M, Cromwijk T, et al.Pupil apodization in digital holographic microscopy for reduction of coherent imaging effects[J].Optics Continuum, 2022, 1(5):1202-1217.
[40] Gao F Y, Zhang Z Q, Liu Z J, et al.High-speed two-dimensional terahertz spectroscopy with echelon-based shot-to-shot balanced detection[J].Optics Letters, 2022, 47(14):3479-3482.
[41] Zhang Y F, Ren Y Y, Chen J A, et al.Fast testing of partial camera lenses based on a liquid crystal spatial light modulator[J].Applied Optics, 2022, 61:6420-d:PDF.pdf6429.
[42] Upadhyay A, Lengden M, Enemali G, et al, Tomographic imaging of carbon dioxide in the exhaust plume of large commercial aero-engines[J].Applied Optics, 2022, 61:8540-8552.
[43] Lee J, Cho M.Enhancement of three-dimensional image visualization under photon-starved conditions[J].Applied Optics, 2022, 61:6374-6382.
[44] Huang L, Yao J P.Optical processor for a binarized neural network[J].Optics Letters, 2022, 47:3892-3895.
[45] Wu J M, Guo Y D, Deng C, et al.An integrated imaging sensor for aberration-corrected 3D photography[J].Nature, 612:62-71.
[46] Wang N C, Zhang K, Shen X, et al.Dual-field-of-view high-spectral-resolution lidar:Simultaneous profiling of aerosol and water cloud to study aerosol-cloud interaction[J].Proceedings of the National Academy of Sciences, 2022, 119(10):e2110756119.
[47] Zhao Y X, Zhang M, Zhang W T, et al.Isotropic superresolution light-sheet microscopy of dynamic intracellular structures at subsecond timescales[J].Nature Methods, 2022, 19:359-369.
[48] Chen Z, Li J F, Li T Z, et al.A CRISPR/Cas12a-empowered surface plasmon resonance platform for rapid and specific diagnosis of the Omicron variant of SARS-CoV-d:PDF.pdf2[J].National Science Review, 2022, 9:nwac104.
[49] Liu X S, Gao Q, Wu S, et al.Optically manipulated neutrophils as native microcrafts in vivo[J].ACS Central Science, 2022, 8(7):1017-1027.
[50] Ma W L, Hu G W, Hu D B, et al.Ghost hyperbolic surface polaritons in bulk anisotropic crystals[J].Nature, 2021, 596:362-366.
[51] Zhu B, Li W, Zhang Q, et al.Subambient daytime radiative cooling textile based on nanoprocessed silk[J].Nature Nanotechnology, 2021, 16:1342-1348.
[52] Zhou T K, Lin X, Wu J M, et al.Large-scale neuromorphic optoelectronic computing with a reconfigurable diffractive processing unit[J].Nature Photonics, 2021, 15:367-373.
[53] Wan C H, Cao Q, Chen J, et al.Toroidal vortices of light[J].Nature Photonics, 2022, 16:519-522.
[54] Zhang X L, Yu F, Chen Z G, et al.Non-Abelian braiding on photonic chips[J].Nature Photonics, 2022, 16:390-395.
[55] Xu X Y, Wang T X, Chen P C, et al.Femtosecond laser writing of lithium niobate ferroelectric nanodomains[J].Nature, 2022, 609:496-501.
[56] Zhang D D, Zeng Y S, Bai Y F, et al.Coherent surface plasmon polariton amplification via free-electron umping[J].Nature, 2022, 611:55-60.
[57] Zhou Z Y, Wang Z F, Huang W, et al.Towards highpower mid-IR light source tunable from 3.8 to 4.5μm by HBr-filled hollow-core silica fibres[J].Light:Science & Applications, 2022, 11:15.
[58] Guo B B, Lai R C, Jiang S J, et al.Ultrastable near-infrared perovskite light-emitting diodes[J].Nature Photonics, 2022, 16:637-643.
[59] Feng C, Liu T, Chen S, et al.Coherent and ultrashort soft X-ray pulses from echo-enabled harmonic cascade free-electron lasers[J].Optica, 2022, 9(7):785-791.
[60] Yang R A, Zhao M H, Jin X G, et al.Attosecond timing jitter from high repetition rate femtosecond "solid-state fiber lasers"[J].Optica, 2022, 9(8):874-877.
[61] Yang L C, Li G R, Gao X M, et al.Topological-cavity surface-emitting laser[J].Nature Photonics, 2022, 16(4):279-283.
[62] Dai D X, Ao Y T, Bao J M, et al.Topologically protected quantum entanglement emitters[J].Nature Photonics, 2022, 16:248-257.
[63] Meng T T, Zheng Y T, Zhao D L, et al.Ultrahigh-resolution quantum-dot light-emitting diodes[J].Nature Photonics, 2022, 16:297-303.
[64] An M H, Ding R, Zhang X L, et al.Highly polarized emission from organic single-crystal light-emitting devices with a polarization ratio of 176[J].Optica, 2022, 9(1):121-129.
[65] Li A X, Qin C Y, Zhang H, et al.Acceleration of 60 MeV proton beams in the commissioning experiment of the SULF-10 PW laser[J].High Power Laser Science and Engineering, 2022, 10(4):04000e26.
[66] Zhang X D, Liu Y L, Han J C, et al.Chiral emission from resonant metasurfaces[J].Science, 2022, 377(6611):1215-1218.
[67] Chen H, Jiang Z H, Hu H T, et al.Sub-50-ns ultrafast upconversion luminescence of a rare-earth-doped nanoparticle[J].Nature Photonics, 2022, 16:651-657.
[68] Liang F, He C, Lu D Z, et al.Multiphonon-assisted lasing beyond the fluorescence spectrum[J].Nature Physics, 18:1312-1316.
[69] Qian S H, Meng J, Liu W J, et al.Identification of endoplasmic reticulum formation mechanism by multi-parametric, quantitative super-resolution imaging[J].Optics Letters, 2022, 47(2):357-360.
[70] Sacher W D, Chen F, Moradi-Chameh H, et al.Optical phased array neural probes for beam-steering in brain tissue[J].Optics Letters, 2022, 47(5):1073-1076.
[71] Cua M, Blochet B, Yang C H.Speckle-resolved optical coherence tomography for mesoscopic imaging within scattering media[J].Biomedical Optics Express, 2022, 13(4):2068-2081.
[72] Kozawa Y, Nakamura T, Uesugi Y, et al.Wavefront engineered light needle microscopy for axially resolved rapid volumetric imaging[J].Biomedical Optics Express, 2022, 13(3):1702-1717.
[73] Hammer M, Simon R, Meller D, et al.Combining fluorescence lifetime with spectral information in fluorescence lifetime imaging ophthalmoscopy (FLIO)[J].Biomedical Optics Express, 2022, 13:5483-5494.
[74] Yu X C, Tang S J, Liu W J, et al.Single-molecule optofluidic microsensor with interface whispering gallery modes[J].Proceedings of the National Academy of Sciences, 2022, 119(6):e2108678119.
[75] Mizushima S, Mizokami Y.Diffuseness of illumination suitable for reproducing a faithful and ideal appearance of an object[J].Journal of the Optical Society of America A, 2022, 39(3):401-410.
[76] Martínez-Domingo M Á, Galdón A, Gómez-Robledo L, et al.Color vision deficiencies and camouflage:A comparative study between normal and CVD observers[J].Optics Express, 30(8):13699-13713.
[77] Bozorgian A, Pedersen M, Thomas J B.Modification and evaluation of the peripheral contrast sensitivity function models[J].Journal of the Optical Society of America A, 2022, 39:1650-1658.
[78] Spotlight on optics hightlighteted articles from optica pulishing group jouranls[EB/OL].(2022-12-25)[2022-12-d:PDF.pdf30].https://opg.optica.org/spotlight/default.cfm?month=1&year=2022.
[79] 中国 光学 十大 进展 2022年 候选 成果 推荐[EB/OL].(2022-12-28)[2022-21-31].https://www.opticsjournal.net/TenAdvances/ZGGX?type=lntj_index.
[80] 爱光学-前研进展[EB/OL].(2022-12-23)[2022-12-28].https://mp.weixin.qq.com/mp/appmsgalbum?__biz=MzU2NTgyNzkyMg==&action=getalbum&album_id=179-d:PDF.pdf6296620448202752&scene=173&from_msgid=2247557-d:PDF.pdf214&from_itemidx=1&count=3&nolastread=1#wechat_redirect.
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