Patents Assigned to CeLight, Inc.
  • Patent number: 8300229
    Abstract: This invention relates generally to the systems and methods for standoff trace chemicals detection such as explosives residue and others, and particularly to optical devices and the methods of their use based on sensing of gases and residue materials. This sensing includes detection and measurement of optical absorption spectra and relative concentration of the chemical followed by the chemical identification based on these spectral data. The sensing is based on photothermal interferometry method improved by implementation of coherent optical detection. The coherent optical detection is performed by an integrated polarization-diversity coherent receiver with an electro-optic phase modulator for a local oscillator optical beam. The implementation of pulsed probe sensing and local oscillator optical beams in the coherent detection improves the device with better eye safety performance.
    Type: Grant
    Filed: December 11, 2009
    Date of Patent: October 30, 2012
    Assignee: CeLight, Inc.
    Inventors: Pak Shing Cho, Geoffrey Harston
  • Patent number: 8285153
    Abstract: An optical beam synthesizer formed on a single chip is provided. It allows M-PSK modulation for both beam polarizations. The synthesizer comprises an optical pulse shaper and two M-PSK modulators for each polarization. A single-chip-integrated analyzer is provided to receive a modulated data. Analyzer comprises a pulse shaper operating as an optical sampler and a pair of 90-degrees optical hybrids for each polarization. Each optical hybrids mix incoming portions of the modulated beams with portions of the local oscillator beams. Both the synthesizer and the analyzer include a set of mirrors located on the back and front surfaces of the chips to create compact designs. The output beams from the analyzer are detected by a set of balanced photodiodes, and the data is recovered. It is another object of the invention to provide a communication system for data transmission having the synthesizer and the analyzer.
    Type: Grant
    Filed: March 27, 2009
    Date of Patent: October 9, 2012
    Assignee: CeLight, Inc.
    Inventors: Arkady Kaplan, Isaac Shpantzer
  • Patent number: 8200049
    Abstract: A system and method for a structure monitoring and locating a disturbance event is disclosed. The system includes a compact transceiver chip sending optical signals in three optical fibers that encompass the monitored structure appropriately. The system contains a sequence of loops, wherein the first and the second fiber forming the loop clockwise, while the third fiber is winded along the same loop counterclockwise. A set of two detectors registers the returning signals, and a time delay between those signals is calculated, which is indicative of the disturbance event location. The event location is determined with different sensitivity in different parts of the monitored structure depending on the density of fibers in these parts.
    Type: Grant
    Filed: December 2, 2009
    Date of Patent: June 12, 2012
    Assignee: CeLight, Inc.
    Inventors: Arkady Kaplan, Isaac Shpantzer
  • Patent number: 8143575
    Abstract: A method and system for high Z substance revealing using muon detection technique is presented. Natural muon coordinate and incidence angle are measured above and below the interrogated volume. The muon deviations after passing through the interrogated volume are compared with the reference deviations obtained for the same volume in absence of high Z material. A correlation between the actual data and reference data is calculated using Kolmogorov-Smirnov test, though other approaches may apply. The correlation is used for the decision making on the presence of a nuclear substance inside the volume.
    Type: Grant
    Filed: November 13, 2009
    Date of Patent: March 27, 2012
    Assignee: CeLight, Inc.
    Inventors: Jacques Goldberg, Isaac Shpantzer, Yaakov Achiam, Nadya Reingand
  • Patent number: 8064767
    Abstract: The present invention provides a system and method of optical communications that utilize coherent detection technique and optical orthogonal frequency division multiplexing for phase encoded data transmission. In particular the invention addresses a device and method for digital polarization compensation of optical signals with up to 100 Gb/s transmission rate received via an optical link. The polarization compensation operates in two modes: acquisition mode and tracking mode. The polarization recovery is performed at the receiver side using the received digital signal conversion into frequency domain and separate reconstruction of the polarization state in each spectral component.
    Type: Grant
    Filed: March 11, 2008
    Date of Patent: November 22, 2011
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Alexander Genusov, Yehouda Meiman, Jacob Khurgin
  • Patent number: 8050351
    Abstract: The method and system are disclosed for automatic feedback control of integrated optical quadrature modulator for generation of optical quaternary phase-shift-keyed signal in coherent optical communications. The method comprises the steps of detecting at least a part of an output optical signal from the QPSK modulator, extracting of a particular portion of the output signal in frequency domain, and processing the signal in frequency domain to optimize the transmission of an optical link. The system and method of optical communications in fiber or free space are disclosed that implement the quadrature data modulator with automatic feedback control.
    Type: Grant
    Filed: February 27, 2007
    Date of Patent: November 1, 2011
    Assignee: CeLight, Inc.
    Inventors: Pak Shing Cho, Jacob Khurgin, Isaac Shpantzer
  • Patent number: 8041224
    Abstract: A non-line of sight (NLOS) communications system and method are provided that implement orthogonal frequency, division multiplexing. A data generator produces a digital data stream, which is converted into M parallel frequency sub-carrier digital data streams (where M is an integer), each sub-carrier is encoded with data and an Inverse Fast Fourier Transform operation is applied, and an output signal is converted to an analog signal, which is imposed onto an optical beam generated by a light source. The beam is transmitted skywards at an elevation angle above the horizon in at least one direction. The beam is scattered due to Mie and Raleigh effects, forming a scattered waveform. At least a part of the scattered waveform is received by a receiver outputting an electrical signal, which enters a DSP unit. The DSP unit digitizes the electrical signal, performs Fourier transformation and recovers data from M sub-carrier signals.
    Type: Grant
    Filed: June 11, 2008
    Date of Patent: October 18, 2011
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Jacob Khurgin
  • Patent number: 8009294
    Abstract: A photo-thermal, interferometric spectroscopy system is disclosed that provides information about a chemical, such as explosives and the like, at a remote location. It may be used for solid residue detection on a surface. The system includes a novel light detector system with a matrix of optical elements focusing portions of a received light beam on input waveguides of an optical combiner. The combiner adjusts the phases of the received beam portions and combines them together to maximize the intensity of an output beam. The output beam is detected by a detector, and information about at least one of, absorption spectrum and concentration of the chemical is recovered. In the preferred embodiment the detector is a coherent detector based on 90-degrees optical hybrid.
    Type: Grant
    Filed: January 29, 2009
    Date of Patent: August 30, 2011
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Jacob Khurgin, Arkady Kaplan, Pak Shing Cho, Yaakov Achiam
  • Patent number: 8009295
    Abstract: This invention relates generally to the systems and methods for chemicals detection such as explosives and others, and more particularly to optical devices and the methods of their use based on sensing of gases and residue materials. This sensing includes detection of optical spectrum and relative concentration of the chemical followed by the chemical identification based on these data. The sensing is based on photothermal interferometry method modified by implementation of coherent optical detection using a balanced receiver, where the incoming optical signal is mixed with a local oscillator beam. An additional phase shift is embedded in the local oscillator beam for adaptively negating the background noise in the incoming optical signal thus improving the system performance.
    Type: Grant
    Filed: February 24, 2010
    Date of Patent: August 30, 2011
    Assignee: CeLight, Inc.
    Inventor: Pak Shing Cho
  • Patent number: 7995925
    Abstract: An optical beam combiner is provided, which allows efficient collection of light for various applications: non-line of sight and free space optical communications, remote sensing, optical imaging and others. A multitude of transverse scattered optical beam portions is captured by the multi-aperture array positioned perpendicular to the beam projection direction. These beam portions are combined first into a single optical waveguide with minimal loss of power. This is achieved by modulating the beam portions phase and coupling ratio of couplers in the optical beam combiner tuned to maximize the final output power. The data is recovered from the received optical beam using coherent detection.
    Type: Grant
    Filed: February 13, 2009
    Date of Patent: August 9, 2011
    Assignee: CeLight, Inc.
    Inventors: Pak Shing Cho, Isaac Shpantzer, Jacob Khurgin
  • Patent number: 7974543
    Abstract: A device for phase distortion compensation across an optical beam is provided. The device is a part of an optical receiver, which can be used in free space optical communications, remote sensing, optical imaging and others. 2M inputs of the combiner interfere with each other via a system of tunable coupled waveguides. The phases in interleaved waveguides of the combiner are adjusted to maximize the resulting output signal. The combiner may be used for coherent communication in combination with a balanced 90° hybrid. Integrated solutions for the proposed device are provided.
    Type: Grant
    Filed: December 9, 2008
    Date of Patent: July 5, 2011
    Assignee: CeLight, Inc.
    Inventors: Jacob Khurgin, Isaac Shpantzer, Arkady Kaplan, Pak Shing Cho
  • Patent number: 7961997
    Abstract: An optical beam combiner is provided, which allows efficient collection of light for various applications: non-line of sight and free space optical communications, remote sensing, optical imaging and others. A multitude of optical beam portions is captured by a space diversity receiver that includes an optical beam combiner, which has a tree-like topology with interconnected waveguides, electro-optic phase shifters, and directional couplers. For each of the beam portions the phase of the phase shifter and the coupling ratio of coupler in the optical beam combiner are tuned sequentially to maximize the final output power in the final optical waveguide. A portion of the final output beam is used for the power detection and forming a feedback signal for the phases and coupling ratios adjustment. The data or information is recovered from the received final optical beam using coherent detection.
    Type: Grant
    Filed: February 20, 2009
    Date of Patent: June 14, 2011
    Assignee: CeLight, Inc.
    Inventors: Pak Shing Cho, Jacob Khurgin, Isaac Shpantzer
  • Patent number: 7949262
    Abstract: An optical beam combiner is provided, which allows efficient collection of light for various applications: non-line of sight and free-space optical communications, remote sensing, optical imaging and others. A multitude of transverse scattered optical beam portions is captured by the multi-aperture array positioned perpendicular to the beam projection direction. These beam portions are combined first into a single optical waveguide with modulating the beam portions phase and coupling ratio of directional couplers in the optical beam combiner tuned to maximize the final output power. A portion of the output beam is used for the power detection and forming a feedback signal for the phases and coupling ratios adjustment. The data is recovered from the received optical beam using coherent detection.
    Type: Grant
    Filed: February 25, 2009
    Date of Patent: May 24, 2011
    Assignee: CeLight, Inc.
    Inventors: Pak Shing Cho, Jacob Khurgin, Isaac Shpantzer
  • Patent number: 7945174
    Abstract: The invention provides a system and method for secure communication that involves encoding and transmitting an optical communications signal that is encoded based on a multi-dimensional encoding technique. This technique may include at least one or more of encoding a phase, a polarization, and a frequency of the signal. Light encoding is independent from its modulation with data. The data is modulated using any format; in the preferred embodiment the QPSK format is implemented. The encoded and modulated light is transmitted through free space or via a fiber optic network to a receiver, where the information is decoded. A coherent detection based on 90-degrees or 120-degrees optical hybrid is used to decode and recover the data from the received signal. Because the encoding of the transmitted light varies according to a specific pattern or sequence, one without knowledge of the transmission encoding sequence is prevented from decoding the transmitted information.
    Type: Grant
    Filed: February 8, 2008
    Date of Patent: May 17, 2011
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Nadejda Reingand, Aviv Salamon
  • Patent number: 7903255
    Abstract: Proposed optical device is based on counter-propagating optical fields within at least one nested waveguide-cavity loop, where the part of the waveguide loop is fold into the external waveguide loop. The nesting is performed using at least one waveguide crossing section. The invention may be used in Sagnac interferometer to measure various physical parameters, including rotation rate, electric current and mechanical perturbations. The invention also addressed a measurement method of such non-reciprocal parameters of interest. Optionally, the cavity includes a gain element, and the device operation may be switched discretely or gradually between passive and active regimes, thus changing the measurement characteristics.
    Type: Grant
    Filed: August 15, 2008
    Date of Patent: March 8, 2011
    Assignee: CeLight, Inc.
    Inventor: Arkady Kaplan
  • Patent number: 7897925
    Abstract: A method and system for high Z material revealing using muon detection technique is presented. The system measures muons' coordinates, velocities, incidence angles and leaving angles. Two series of detectors: one above and one below the interrogated volume are used. A muon trajectory deviation from an expected trajectory is used for the decision making on the presence of high Z material inside the volume. The muon velocity is measured using either a ring Cerenkov counter, a transition radiation detector or/and a threshold Cerenkov counter. The expected trajectory is calculated basing on known particle velocity.
    Type: Grant
    Filed: November 17, 2008
    Date of Patent: March 1, 2011
    Assignee: CeLight, Inc.
    Inventors: Jacques Goldberg, Isaac Shpantzer, Yaakov Achiam, Nadejda Reingand
  • Patent number: 7840144
    Abstract: An optical transceiver is provided for optical communications with additive noise compensation. The system and method are disclosed for the additive noise cancellation, which is typically a vibration noise, caused by moving platform, where the transceiver is located. The transceiver comprises an additive noise sensor and a digital signal processing (DSP) unit which implements variable step size technique to adjust the filter weight in the least square estimate of the noise signal. In the preferred embodiment the digital signal processing is applied both at the transmission and the receiving side. The optical device is packed for ground-satellite and inter-satellite communications applications with resistance to high-energy X-rays, gamma rays and cosmic rays. The optical device sustains its operation characteristics under launch load.
    Type: Grant
    Filed: October 4, 2007
    Date of Patent: November 23, 2010
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Sabera Kazi
  • Patent number: 7801395
    Abstract: An optical device is provided with first and second inputs. A first coupler coupled is coupled to the first input and produces at least a first and second output. A second coupler is coupled to the second input and produces at least a first and second output. A third coupler is coupled to the first output of the first coupler and to the first output of the second coupler. A fourth coupler is coupled to the second output of the first coupler and to the second output of the second coupler. First and second crossing waveguides are provided with an angle selected to minimize crosstalk and losses between the first and second cross waveguides. The first crossing waveguide connects one of the first or second outputs from the first coupler with an input of the fourth coupler. The second crossing waveguide connects one of the first or second outputs from the second coupler with an input of the third coupler. A first phase shifter is coupled to the first and second waveguides.
    Type: Grant
    Filed: November 12, 2007
    Date of Patent: September 21, 2010
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Aviv Salamon, Arkady Kaplan, Pak Shing Cho, Jacob Khurgin, Yaakov Achiam, Arthur Greenblatt, Geofrey Harston
  • Patent number: 7715720
    Abstract: An optical device is provided with first and second inputs. A first coupler coupled is coupled to the first input and produces at least a first and second output. A second coupler is coupled to the second input and produces at least a first and second output. A third coupler is coupled to the first output of the first coupler and to the first output of the second coupler. A fourth coupler is coupled to the second output of the first coupler and to the second output of the second coupler. First and second crossing waveguides are provided with an angle selected to minimize crosstalk and losses between the first and second cross waveguides. The first crossing waveguide connects one of the first or second outputs from the first coupler with an input of the fourth coupler. The second crossing waveguide connects one of the first or second outputs from the second coupler with an input of the third coupler. A first phase shifter is coupled to the first and second waveguides.
    Type: Grant
    Filed: April 3, 2007
    Date of Patent: May 11, 2010
    Assignee: CeLight, Inc.
    Inventors: Isaac Shpantzer, Aviv Salamon, Pak Shing Cho
  • Patent number: 7693428
    Abstract: The present invention discloses a transmitter and receiver for optical communications system, which provide compensation of the optical link nonlinearity. M-PSK modulating is used for data embedding in an optical signal in each WDM channel using orthogonal frequency division multiplexing (OFDM) technique. At the receiver side electrical output signals from a coherent optical receiver are processed digitally with the link nonlinearity compensation. It is followed by the signal conversion into frequency domain and information recovery from each subcarrier of the OFDM signal. At the transmitter side an OFDM encoder provides a correction of I and Q components of a M-PSK modulator driving signal to compensate the link nonlinearity prior to sending the optical signal to the receiver.
    Type: Grant
    Filed: April 3, 2009
    Date of Patent: April 6, 2010
    Assignee: CeLight, Inc.
    Inventors: Jacob Khurgin, Isaac Shpantzer