Patents by Inventor Yoav Hazan

Yoav Hazan has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11977021
    Abstract: A method comprising: generating a pulsed laser beam comprised of non-interfering pulse-pairs having a phase difference, wherein the phase difference changes between each two consecutive cycles of the pulse-pairs; directing the pulsed laser beam at one or more optical resonators, wherein each of the one or more optical resonators is impinged by acoustic waves, to cause the pulsed laser beam to propagate through each of the one or more optical resonators, thereby interfering the pulse-pairs; and calculating shifts in a spectral response of each of the one or more optical resonators based on measuring the interference, wherein the shifts are indicative of a waveform of the acoustic waves.
    Type: Grant
    Filed: August 19, 2019
    Date of Patent: May 7, 2024
    Assignee: TECHNION RESEARCH & DEVELOPMENT FOUNDATION LIMITED
    Inventors: Amir Rozental, Yoav Hazan
  • Publication number: 20240011822
    Abstract: A system and method of detecting acoustic waves including directing a continuous-wave source laser beam to an optical resonator that is impinged by acoustic the waves. Optionally, the source laser beam can propagate through the optical resonator, thereby generating a propagated laser beam. Using an interferometer, the acoustic waves can be detected by monitoring transients in an optical phase of the propagated laser beam.
    Type: Application
    Filed: September 19, 2023
    Publication date: January 11, 2024
    Inventors: Amir ROZENTAL, Lucas RIOBO, Yoav HAZAN
  • Patent number: 11796383
    Abstract: A system and method of detecting acoustic waves including directing a continuous-wave source laser beam to an optical resonator that is impinged by acoustic the waves. Optionally, the source laser beam can propagate through the optical resonator, thereby generating a propagated laser beam. Using an interferometer, the acoustic waves can be detected by monitoring transients in an optical phase of the propagated laser beam.
    Type: Grant
    Filed: January 7, 2020
    Date of Patent: October 24, 2023
    Assignee: TECHNION RESEARCH & DEVELOPMENT FOUNDATION LIMITED
    Inventors: Amir Rozental, Lucas Riobo, Yoav Hazan
  • Publication number: 20230213377
    Abstract: A laser system for acousto-optics imaging is disclosed. The system comprises: a continuous wave laser source; a first beam splitter configured to split a laser emitted by the continuous wave laser source into a lasing beam and a reference beam; a lasing optical fiber diffusing the lasing beam to a subject; a reference optical fiber providing the reference beam; a collecting optical fiber capable of receiving a scattered beam from the subject; a second beam splitter for merging the scattered and reference beams into a merged beam, and at least one photodetector assembly with a bandwidth higher than the ultrasound frequency to detect the merged beam.
    Type: Application
    Filed: December 29, 2022
    Publication date: July 6, 2023
    Inventors: Amir ROZENTAL, Ahiad LEVI, Yoav HAZAN, Aner LEV
  • Patent number: 11419503
    Abstract: An apparatus for optical detection of ultrasound includes one or more optical resonators (OR—200), one or more optical passive-demodulation interferometers (OPDI—22), and one or more respective electro-optical readout circuits (EORC—24). The one or more optical resonators (OR) are configured to modulate respective carrier frequencies of optical signals indicative of US waves impinging thereon. The one or more OPDI are implemented in one or more photonic integrated circuits (PIC), wherein each OPDI is configured to demodulate the optical signal output by the respective OR, so as to generate a respective intensity-modulated optical signal. Each OPDI includes an interferometer (32) having imbalanced arms (323, 325) that are recombined using an optical hybrid (34). The one or more respective EORC are each configured to measure the intensity demodulated optical signal produced by the respective OPDI, and to output a respective electrical signal.
    Type: Grant
    Filed: September 3, 2018
    Date of Patent: August 23, 2022
    Assignee: TECHNION RESEARCH & DEVELOPMENT FOUNDATION LTD.
    Inventors: Amir Rozental, Yoav Hazan
  • Publication number: 20220074789
    Abstract: A method comprising: directing a continuous-wave source laser beam to an optical resonator that is impinged by acoustic waves, wherein said source laser beam is propagated through said optical resonator; and detecting a signal associated with said acoustic waves by monitoring, using an interferometer, transients in the optical phase in said propagated laser beam, wherein said transients are indicative of a waveform of said acoustic waves.
    Type: Application
    Filed: January 7, 2020
    Publication date: March 10, 2022
    Inventors: Amir ROZENTAL, Lucas RIOBO, Yoav HAZAN
  • Publication number: 20210349009
    Abstract: A method comprising: generating a pulsed laser beam comprised of non-interfering pulse-pairs having a phase difference, wherein said phase difference changes between each two consecutive cycles of said pulse-pairs; directing said pulsed laser beam at one or more optical resonators, wherein each of said one or more optical resonators is impinged by acoustic waves, to cause said pulsed laser beam to propagate through each of said one or more optical resonators, thereby interfering said pulse-pairs; and calculating shifts in a spectral response of each of said one or more optical resonators based on measuring said interference, wherein said shifts are indicative of a waveform of said acoustic waves.
    Type: Application
    Filed: August 19, 2019
    Publication date: November 11, 2021
    Inventors: Amir ROZENTAL, Yoav HAZAN
  • Publication number: 20200196874
    Abstract: An apparatus for optical detection of ultrasound includes one or more optical resonators (OR—200), one or more optical passive-demodulation interferometers (OPDI—22), and one or more respective electro-optical readout circuits (EORC—24). The one or more optical resonators (OR) are configured to modulate respective carrier frequencies of optical signals indicative of US waves impinging thereon. The one or more OPDI are implemented in one or more photonic integrated circuits (PIC), wherein each OPDI is configured to demodulate the optical signal output by the respective OR, so as to generate a respective intensity-modulated optical signal. Each OPDI includes an interferometer (32) having imbalanced arms (323, 325) that are recombined using an optical hybrid (34). The one or more respective EORC are each configured to measure the intensity demodulated optical signal produced by the respective OPDI, and to output a respective electrical signal.
    Type: Application
    Filed: September 3, 2018
    Publication date: June 25, 2020
    Inventors: Amir Rozental, Yoav Hazan