Patents by Inventor Shimon Weiss

Shimon Weiss 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).

  • Publication number: 20030099968
    Abstract: A semiconductor nanocrystal compound is described which is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more of these semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy.
    Type: Application
    Filed: May 24, 2002
    Publication date: May 29, 2003
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 6423551
    Abstract: A semiconductor nanocrystal compound is described capable of linking to an affinity molecule. The compound comprises (1) a semiconductor nanocrystal capable of emitting electromagnetic radiation and/or absorbing energy, and/or scattering or diffracting electromagnetic radiation—when excited by an electromagnetic radiation source or a particle beam; and (2) at least one linking agent, having a first portion linked to the semiconductor nanocrystal and a second portion capable of linking to an affity molecule. The compound is linked to an affinity molecule to form a semiconductor nanocrystal probe capable of bonding with a detectable substance. Subsequent exposure to excitation energy will excite the semiconductor nanocrystal in he probe, causing the emission of electromagnetic radiation.
    Type: Grant
    Filed: July 8, 1999
    Date of Patent: July 23, 2002
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Marcel Bruchez, Jr., Paul Alivisatos
  • Publication number: 20020072234
    Abstract: A semiconductor nanocrystal compound is described which is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more of these semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy.
    Type: Application
    Filed: February 12, 2001
    Publication date: June 13, 2002
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Publication number: 20020064789
    Abstract: A novel optical ruler based on ultrahigh-resolution colocalization of single fluorescent probes is described. Two unique families of fluorophores are used, namely energy-transfer fluorescent beads and semiconductor nanocrystal (NC) quantum dots, that can be excited by a single laser wavelength but emit at different wavelengths. A novel multicolor sample-scanning confocal microscope was constructed which allows one to image each fluorescent light emitter, free of chromatic aberrations, by scanning the sample with nanometer scale steps using a piezo-scanner. The resulting spots are accurately localized by fitting them to the known shape of the excitation point-spread-function of the microscope.
    Type: Application
    Filed: August 8, 2001
    Publication date: May 30, 2002
    Inventors: Shimon Weiss, Xavier Michalet, Thilo D. Lacoste
  • Patent number: 6207392
    Abstract: A semiconductor nanocrystal compound is described which is capable of linking to one or more affinity molecules. The compound comprises (1) one or more semiconductor nanocrystals capable of, in response to exposure to a first energy, providing a second energy, and (2) one or more linking agents, having a first portion linked to the one or more semiconductor nanocrystals and a second portion capable of linking to one or more affinity molecules. One or more of these semiconductor nanocrystal compounds are linked to one or more affinity molecules to form a semiconductor nanocrystal probe capable of bonding with one or more detectable substances in a material being analyzed, and capable of, in response to exposure to a first energy, providing a second energy.
    Type: Grant
    Filed: March 1, 1999
    Date of Patent: March 27, 2001
    Assignee: The Regents of the University of California
    Inventors: Shimon Weiss, Marcel Bruchez, Paul Alivisatos
  • Patent number: 5990479
    Abstract: A luminescent semiconductor nanocrystal compound is described which is capable of linking to an affinity molecule. The compound comprises (1) a semiconductor nanocrystal capable of emitting electromagnetic radiation (luminescing) in a narrow wavelength band and/or absorbing energy, and/or scattering or diffracting electromagnetic radiation--when excited by an electromagnetic radiation source (of narrow or broad bandwidth) or a particle beam; and (2) at least one linking agent, having a first portion linked to the semiconductor nanocrystal and a second portion capable of linking to an affinity molecule.
    Type: Grant
    Filed: November 25, 1997
    Date of Patent: November 23, 1999
    Assignee: Regents of the University of California
    Inventors: Shimon Weiss, Marcel Bruchez, Jr., Paul Alivisatos
  • Patent number: 5416327
    Abstract: An ultrafast scanning probe microscopy method for achieving subpicosecond-temporal resolution and submicron-spatial resolution of an observation sample. In one embodiment of the present claimed invention, a single short optical pulse is generated and is split into first and second pulses. One of the pulses is delayed using variable time delay means. The first pulse is then directed at an observation sample located proximate to the probe of a scanning probe microscope. The scanning probe microscope produces probe-sample signals indicative of the response of the probe to characteristics of the sample. The second pulse is used to modulate the probe of the scanning probe microscope. The time delay between the first and second pulses is then varied. The probe-sample response signal is recorded at each of the various time delays created between the first and second pulses. The probe-sample response signal is then plotted as a function of time delay to produce a cross-correlation of the probe sample response.
    Type: Grant
    Filed: October 29, 1993
    Date of Patent: May 16, 1995
    Assignee: Regents of the University of California
    Inventors: Shimon Weiss, Daniel S. Chemla, D. Frank Ogletree, David Botkin
  • Patent number: 4869579
    Abstract: A novel optical system and method for coupling and mixing a plurality of beams which may originate from different optical sources and may be of different colors. There is provided deflection and steering of light beams with automatic (self-aligning) Bragg matching over a large beam deflection range which is not limited by the Brass condition. There is also provided a novel method of spatial light filtering and modulation, image color conversion, bidirectional beam interconnection for optical communication and combining and locking of laser sources.
    Type: Grant
    Filed: July 28, 1987
    Date of Patent: September 26, 1989
    Assignee: Technion Research & Development Foundation
    Inventors: Baruch Fischer, Shmuel Sternklar, Shimon Weiss