Laser & Optoelectronics Progress, Volume. 58, Issue 15, 1516007(2021)

Research Progress of Acousto-Optic Crystals, Glass Materials and Modulators

Zenghua Xu1,3,4, Shixun Dai1,3,4、*, Changgui Lin1,3,4, and Zhongchao Wu2
Author Affiliations
  • 1Laboratory of Infrared Materials and Devices, The Research Institute of Advanced Technologies, Ningbo University, Ningbo , Zhejiang 315211, China
  • 2The 26th Research Institute of China Electronics Technology Group Corporation, Chongqing 400060, China
  • 3Key Laboratory of Photoelectric Materials and Devices of Zhejiang Province, Ningbo , Zhejiang 315211, China
  • 4Engineering Research Center for Advanced Infrared Photoelectric Materials and Devices of Zhejiang Province, Ningbo , Zhejiang 315211, China
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    Figures & Tables(14)
    Schematic of acousto-optic effect. (a) Raman-Nath diffraction; (b) Bragg diffraction
    Several common acousto-optic crystal materials
    Acousto-optic modulators produced by four manufacturers
    Three new acousto-optic crystal materials. (a) TlInS2; (b) TlInSe2; (c) InI
    β-BTM acousto-optic modulator is used for Nd: YVO4 Q-switched laser output[55-56]. (a) Experimental device of acousto-optic Q-switched Nd∶YAG/Nd∶YVO4 laser; (b) narrow pulse output obtained by acousto-optic modulator
    Several common acousto-optic glasses
    Raman spectra of two glass systems[78-79]. (a) (100-x)GeS2-xSb2S3; (b) Ge12SbyS88-y
    Variation of the diffraction efficiency with the RF power
    • Table 1. Acousto-optic characteristic parameters of commonly used crystal materials[27]

      View table

      Table 1. Acousto-optic characteristic parameters of commonly used crystal materials[27]

      Types of acousto-optic crystal materialsnM2 /(10-15 s3 /kg)α /(dB·cm-1·GHz-2
      Quartz crystal1.552.383
      TeO22.2679315
      PbMoO42.3956.4715
      GaAs3.371049.9
      Ge4.005409
      GaP3.3144.66
    • Table 2. Product model and related parameters of acousto-optic modulator based on crystal materials

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      Table 2. Product model and related parameters of acousto-optic modulator based on crystal materials

      ManufacturerCrystalWavelength /nmModulation bandwidth /MHzCentre frequency/MHzRise time/nsη/%
      G&H32TeO24006806590
      Quartz2572001075
      Ge940040/60120>90
      AA33TeO2450-70080250685
      Quartz488-63381105085
      Ge930044012075
      Isomet34TeO2442-6333507>80
      Quartz5322080114>85
      PbMoO4488-633308036>85
      Ge106001040470>60
      Brimrose35380-16001005.550
      600-16004001.4>25
      1000-2500868>80
      CETC36532>30150160>80
      63340150>75
      1060040>80
    • Table 3. Performance parameters of new acousto-optic crystals

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      Table 3. Performance parameters of new acousto-optic crystals

      MaterialRefractive indexTransparent window /µmAcoustic velocity /(105 cm·s-1

      M2 /

      10-18s3·g-1

      Wavelength /nmAcoustic attenuation /(dB·cm-1·GHz-2Reference
      Sn2P2S63.090.53‒8.01.561700632.838
      AgGaGeS42.410.50‒11.51.5750060044
      TlBr-TlI2.420.53‒5021020001047
      InI2.550.62‒512.231100115049
      KY(WO422.080.40‒54.5613.563351
      KLu(WO422.110.36‒5.12.7310.763353
      KGd(WO422.040.35‒3.54.3016.6106054
      α-BaTeMo2O92.190.40‒5.54.3710.1810641.1456
      GaP3.310.60‒106.5298632.8657
      CaWO41.920.27‒101.8814.063358
      Tl3AsS42.770.60‒120.631990632.829
      2.07945632.859
    • Table 4. Main parameters of several common acousto-optic glass materials[14]

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      Table 4. Main parameters of several common acousto-optic glass materials[14]

      Types of acousto-optic glass materialsnM2 /(10-15 s3·kg-1α /(dB·cm-1·GHz-2
      Fused silica1.461.512
      SF-41.614.51
      Ge33As12Se552.7024828.4
      Ge30As20Se502.643309.9
      As2S32.61433170
      As2Se32.89779250
    • Table 5. Relevant parameters of acousto-optic modulator products of three commercial companies

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      Table 5. Relevant parameters of acousto-optic modulator products of three commercial companies

      ManufacturerMaterialWavelength /nmModulation bandwidth /MHzCentre frequency /MHzRise time /nsη /%
      G&H32Fused silica4006806590
      Ge30As20Se5015504026080
      1900‒21004026075
      AA33Fused silica24482003385
      10405085
      Ge33As12Se551300‒160010805085
      201102585
      Isomet34Fused silica515‒640308031>85
      SF577802050>80
    • Table 6. Performance parameters of new acousto-optic glasses

      View table

      Table 6. Performance parameters of new acousto-optic glasses

      MaterialRefractive indexTransparent window /µm

      Acoustic velocity /

      (105 cm·s-1

      M2 /

      10-18 s3·g-1

      Wavelength /nmAcoustic attenuation /(dB·cm-1·GHz-2Reference
      Ge30Se30Te402.801.3‒16.02.202783390940074
      Ge10As20Te703.592.0‒17.52.15227910600940075
      Ge10As20Te50Se203.212.0‒15.02.17126310600743375
      65GeS2-25Ga2S3-10CsCl2.080.5‒11.02.8955.6632.876
      (GeTe4.370(AgI)303.722.0‒20.02.03376110600782277
      Ge30As15S552.480.5‒11.02.84138.9633268878
      Ge12Sb32S562.660.6‒8.02.672521550312079
      Si20Te803.201.5‒20.02.05

      3500

      3200

      10600

      3390

      80080
      Ge30S702.140.4‒11.02.5311463321581
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    Zenghua Xu, Shixun Dai, Changgui Lin, Zhongchao Wu. Research Progress of Acousto-Optic Crystals, Glass Materials and Modulators[J]. Laser & Optoelectronics Progress, 2021, 58(15): 1516007

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    Paper Information

    Category: Materials

    Received: May. 21, 2021

    Accepted: Jun. 19, 2021

    Published Online: Aug. 6, 2021

    The Author Email: Shixun Dai (daishixun@nbu.edu.cn)

    DOI:10.3788/LOP202158.1516007

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