Disordered Photonics

By Hui Cao

Department of Applied Physics, Yale University, New Haven, CT

Published on

Abstract

Most of the research in the field of photonics has focused on understanding and mitigating the effects of disorder which are often detrimental. For certain applications, however, intentionally introducing disorder can actually improve the device performance, e.g., in photovoltaics optical scattering improves the efficiency of light harvesting. We have utilized multiple scattering in a random photonic structure to build a compact on-chip spectrometer. The probe signal diffuses through a scattering medium generating wavelength-dependent speckle patterns which can be used to recover the input spectrum after calibration. Multiple scattering increases the optical pathlength by folding the paths in a confined geometry, enhancing the spectral decorrelation of speckle patterns and thus increasing the spectral resolution. By designing and fabricating the spectrometer on a silicon wafer, we efficiently channel the scattered light to the detectors, minimizing the reflection loss. We demonstrate the wavelength resolution of 0.75 nm at the center wavelength of 1500 nm in a 25 μm by 50 μm random structure. Furthermore, the phenomenal control afforded by semiconductor nanofabrication technology enables engineering of the disorder to reduce the out-of-plane scattering loss. Such a compact, high-resolution spectrometer that is integrated on a silicon chip and robust against the fabrication imperfections is well suited for lab-on-a-chip spectroscopy applications.

 

Hui Cao

 

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Cite this work

Researchers should cite this work as follows:

  • Hui Cao (2014), "Disordered Photonics," https://nanohub.org/resources/20819.

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Time

Location

Birck Technology Center, Room 2001, Purdue University, West Lafayette, IN

Tags

Disordered Photonics
  • Disordered Photonics 1. Disordered Photonics 0
    00:00/00:00
  • Lasers in Imaging 2. Lasers in Imaging 86.119452786119453
    00:00/00:00
  • Lasers in Imaging – Removing Speckle 3. Lasers in Imaging – Removing… 191.75842509175843
    00:00/00:00
  • Lasers in Imaging – Avoiding Speckle 4. Lasers in Imaging – Avoiding… 255.68902235568902
    00:00/00:00
  • Light Sources for Imaging Applications 5. Light Sources for Imaging Appl… 297.5975975975976
    00:00/00:00
  • Random Laser 6. Random Laser 363.99733066399733
    00:00/00:00
  • Random Laser 7. Random Laser 433.36670003336673
    00:00/00:00
  • Spatial Coherence 8. Spatial Coherence 450.78411745078415
    00:00/00:00
  • Tailoring Spatial Coherence by Varying Pump Region 9. Tailoring Spatial Coherence by… 483.04971638304971
    00:00/00:00
  • Tailoring Spatial Coherence by Changing Scattering Strength 10. Tailoring Spatial Coherence by… 529.69636302969639
    00:00/00:00
  • Speckle-free Laser Imaging 11. Speckle-free Laser Imaging 560.99432766099437
    00:00/00:00
  • Spatial cross talk 12. Spatial cross talk 600.5338672005339
    00:00/00:00
  • On-chip Electrically-Pumped Semiconductor Random laser 13. On-chip Electrically-Pumped Se… 693.25992659325993
    00:00/00:00
  • Summary 14. Summary 715.68234901568235
    00:00/00:00
  • Spectrometers 15. Spectrometers 1040.206873540207
    00:00/00:00
  • Spectrometers 16. Spectrometers 1090.6239572906241
    00:00/00:00
  • Chip-Scale Spectrometers 17. Chip-Scale Spectrometers 1122.6226226226227
    00:00/00:00
  • Approaches to On-Chip Spectrometers 18. Approaches to On-Chip Spectrom… 1143.576910243577
    00:00/00:00
  • Approaches to On-Chip Spectrometers 19. Approaches to On-Chip Spectrom… 1179.6463129796464
    00:00/00:00
  • Approaches to On-Chip Spectrometers 20. Approaches to On-Chip Spectrom… 1198.1648314981649
    00:00/00:00
  • Approaches to On-Chip Spectrometers 21. Approaches to On-Chip Spectrom… 1231.6983650316984
    00:00/00:00
  • Approaches to On-Chip Spectrometers 22. Approaches to On-Chip Spectrom… 1258.6252919586254
    00:00/00:00
  • Traditional Spectrometer: one-to-one spectral-spatial mapping 23. Traditional Spectrometer: one-… 1290.8575241908575
    00:00/00:00
  • Spectrometers based on complex spectral-spatial mapping 24. Spectrometers based on complex… 1338.204871538205
    00:00/00:00
  • Dispersion using a Grating 25. Dispersion using a Grating 1361.4614614614616
    00:00/00:00
  • Dispersion using a Random Medium 26. Dispersion using a Random Medi… 1374.0740740740741
    00:00/00:00
  • Design of 2D random spectrometer 27. Design of 2D random spectromet… 1495.9959959959961
    00:00/00:00
  • Design of 2D random spectrometer 28. Design of 2D random spectromet… 1525.6923590256924
    00:00/00:00
  • Random spectrometer on a chip 29. Random spectrometer on a chip 1560.3937270603938
    00:00/00:00
  • Transmission Matrix Calibration 30. Transmission Matrix Calibratio… 1612.8795462128796
    00:00/00:00
  • Spectral Correlation Function 31. Spectral Correlation Function 1671.1711711711712
    00:00/00:00
  • Spectrometer Operation 32. Spectrometer Operation 1734.1007674341008
    00:00/00:00
  • Spectra Reconstruction 33. Spectra Reconstruction 1755.5889222555891
    00:00/00:00
  • Reconstructed Spectra 34. Reconstructed Spectra 1783.8171504838172
    00:00/00:00
  • Engineering Disorder 35. Engineering Disorder 1807.8745412078747
    00:00/00:00
  • Untitled: Slide 36 36. Untitled: Slide 36 1812.4457791124457
    00:00/00:00
  • Characteristic of a random spectrometer 37. Characteristic of a random spe… 1842.6092759426094
    00:00/00:00
  • Ultra-high spectral resolution 38. Ultra-high spectral resolution 1870.9042375709043
    00:00/00:00
  • Ultra-high spectral resolution 39. Ultra-high spectral resolution 1942.7427427427429
    00:00/00:00
  • Multimode fiber as a dispersive element 40. Multimode fiber as a dispersiv… 1959.3927260593928
    00:00/00:00
  • Spectral Resolution 41. Spectral Resolution 2040.9409409409411
    00:00/00:00
  • Multimode fiber Spectrometer 42. Multimode fiber Spectrometer 2111.4781448114782
    00:00/00:00
  • High Spectral Resolution 43. High Spectral Resolution 2145.478812145479
    00:00/00:00
  • Broadband Spectrometer 44. Broadband Spectrometer 2202.8361695028361
    00:00/00:00
  • Measuring broad photoluminescence spectra with a fiber spectrometer 45. Measuring broad photoluminesce… 2230.830830830831
    00:00/00:00
  • Summary of fiber spectrometer 46. Summary of fiber spectrometer 2287.153820487154
    00:00/00:00
  • Summary 47. Summary 2403.9039039039039
    00:00/00:00
  • Reconstructed Spectra 48. Reconstructed Spectra 2764.6312979646314
    00:00/00:00
  • Random spectrometer on a chip 49. Random spectrometer on a chip 2812.2789456122791
    00:00/00:00
  • Engineering Disorder 50. Engineering Disorder 2930.0633967300637
    00:00/00:00