EP1589335A2

System and method to enable eye-safe laser ultrasound detection

Abstract

A system and method that replaces safety requirements of a laser detection system by shifting the wavelength ofa detection laser. An optical wavelength converter that shifts the optical wavelength of a detection laser from a first wavelength within the Infrared "A" portion of the spectrum to a more eye-safe wavelength. The detection laser is directed to the surface of a remote target. Ultrasonic displacements at the surface scatter the filtered detection laser. Collection optics then gather phase modulated light scattered by the surface and direct the phase modulated light to an optical processor that produces a signal representative of the ultrasonic displacements. Signal processors then determine the internal structure of the remote target based on the signal.

EP1589335A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 18 April 2025, 1.4 years ago.

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10 claims: 4 independent, 6 dependent

  1. 1
    A method to generate and detect ultrasonic surface displacements at a remote target comprising:generating ultrasonic displacements at a surface of the remote target;generating a detection laser beam at a first wavelength;converting the first wavelength of the detection laser beam to second wavelength, wherein the second wavelength is an eye-safe wavelength;directing the detection laser beam to the surface of the remote target;scattering the detection laser beam with the ultrasonic surface displacements at the surface to produce phase modulated light;collecting the phase modulated light;and processing the phase modulated light to obtain data representative of the ultrasonic surface displacements at the surface.
  2. 2
    An apparatus to generate and detect ultrasonic surface displacements on a remote target comprising:an ultrasound source to generate ultrasonic surface displacements at the remote target;a detection laser source to generate a detection laser beam;an optical wavelength converter to change the wavelength of the detection laser beam;a first optical assembly that receives and directs the detection laser beam to the remote target where ultrasonic surface displacements at the remote target scatter the detection laser beam to produce phase modulated light;collection optics to collect the phase modulated light;an interferometer to process the phase modulated light and generate at least one output signal;and a processor to process the at least one output signal to obtain data representative of the ultrasonic surface displacements on the surface of the remote target.
  3. 3
    The method of Claim 1 or apparatus of Claim 2, wherein the first wavelength of the detection laser beam is converted by passing the detection laser beam through a non-linear optical wavelength converter selected from the group consisting of an optical parametric oscillator, an optical parametric amplifier, a difference frequency generator or a sum frequency generator.
  4. 4
    The method of Claim 1 or apparatus of Claim 2, wherein the non-linear optical wavelength converter is implemented in a phase-matched configuration.
  5. 5
    The method of Claim 1 or apparatus of Claim 2, wherein the non-linear optical wavelength converter is implemented in a quasi-phase matched configuration.
  6. 6
    The method of Claim 1 or apparatus of Claim 2, wherein the non-linear optical wavelength converter is configured with an input-seeding beam.
  7. 7
    The method of Claim 1 or apparatus of Claim 2, wherein the first wavelength lies within an Infrared "A" section of an electromagnetic spectrum and wherein the second wavelength is longer than the first wavelength.
  8. 8
    The method of Claim 1 or apparatus of Claim 2, wherein the second wavelength lies within an Infrared "B" or an Infrared "C" section of the electromagnetic spectrum.
  9. 9
    An eye-safe laser ultrasound detection system comprising:a detection laser source to generate a detection laser beam at a first wavelength;an optical wavelength converter to change the first wavelength of the detection laser beam to a second wavelength;an optical assembly that receives and directs the detection laser beam, at the second wavelength, to the remote target where ultrasonic surface displacements at the remote target scatter the detection laser beam to produce phase-modulated light;collection optics to collect the phase modulated light;an optical processor to process the phase modulated light and generate at least one output signal;and a signal processor to process the at least one output signal to obtain data representative of the ultrasonic surface displacements on the surface of the remote target.
  10. 10
    An eye-safe laser detection system comprising:a detection laser source to generate a detection laser beam;an optical frequency converter to change the frequency of the detection laser beam;an optical assembly that receives and directs the detection laser beam to the remote target where ultrasonic surface displacements at the remote target scatter the detection laser beam to produce phase-modulated light;collection optics to collect the phase modulated light;an optical processor to process the phase modulated light and generate at least one output signal;and a signal processor to process the at least one output signal to obtain data representative of the ultrasonic surface displacements on the surface of the remote target.