Patents by Inventor Mikhail Zervas

Mikhail Zervas 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: 20080112666
    Abstract: Apparatus for providing optical radiation (10) comprising a pump array (8) for providing pump radiation (7), a first pump combiner (1), and a waveguide (3), wherein the pump radiation (7) from the pump array (8) is coupled into the waveguide (3) via the first pump combiner (1), and wherein the waveguide (3) comprises a pump guide (4) for guiding the pump radiation (7), and a gain medium (5) which emits the optical radiation (10) when it is pumped by the pump radiation (7).
    Type: Application
    Filed: January 10, 2008
    Publication date: May 15, 2008
    Inventors: William Clarkson, David Payne, Malcolm Varnham, Mikhail Zervas
  • Publication number: 20060280217
    Abstract: Apparatus for providing optical radiation (10), which apparatus comprises a pump source (1) for providing pump radiation (2), and a brightness converter (3), the apparatus being characterised in that the brightness converter (3) includes a substantially rigid region along at least a portion of its length.
    Type: Application
    Filed: June 11, 2004
    Publication date: December 14, 2006
    Inventors: Mikhail Zervas, Malcolm Varnham
  • Publication number: 20060239610
    Abstract: An apparatus for propagating optical radiation in a first optical mode having a first spatial mode shape, and a second optical mode having a second spatial mode shape. The first spatial mode shape is different from the second spatial mode shape. The apparatus includes an optical path and a mode transformer. The mode transformer transforms at least a portion of the first optical mode to the second optical mode. The apparatus further includes components for radiation propagation such that in use at least some of the optical radiation propagates along the optical path more than once.
    Type: Application
    Filed: January 5, 2006
    Publication date: October 26, 2006
    Inventors: Louise Hickey, Malcolm Varnham, Mikhail Zervas
  • Publication number: 20060219673
    Abstract: Apparatus for the industrial processing of a material by a fibre laser, which fibre laser emits optical radiation, the apparatus configured such that the optical radiation forms an optical power distribution on a surface of the material, including first and second optical powers which are located at respective first and second radii from a centre of the optical power distribution and which are of substantially higher intensity than a third optical power which is located at a third radius from the centre of the optical power distribution and which is smaller than the first and the second radii.
    Type: Application
    Filed: June 5, 2006
    Publication date: October 5, 2006
    Inventors: Malcolm Varnham, Mikhail Zervas
  • Publication number: 20060204188
    Abstract: Apparatus for providing optical radiation (10) comprising a pump array (8) for providing pump radiation (7), a first pump combiner (1), and a waveguide (3), wherein the pump radiation (7) from the pump array (8) is coupled into the waveguide (3) via the first pump combiner (1), and wherein the waveguide (3) comprises a pump guide (4) for guiding the pump radiation (7), and a gain medium (5) which emits the optical radiation (10) when it is pumped by the pump radiation (7).
    Type: Application
    Filed: February 6, 2004
    Publication date: September 14, 2006
    Inventors: William Clarkson, David Payne, Malcolm Varnham, Mikhail Zervas
  • Publication number: 20060187973
    Abstract: Apparatus for providing optical radiation (15) comprising a pump source (19) and at least one first amplifying waveguide (1), characterised in that the first amplifying waveguide (1) emits optical radiation (15) in excess of 1400 nm when pumped by the pump source (19). In one embodiment, the pump source (19) comprises a plurality of laser diodes (3) and a plurality of second amplifying waveguides (2). The first amplifying waveguide (1) is pumped by the second amplifying waveguides (2). The second amplifying waveguides (2) are pumped by the laser diodes (3). The second amplifying waveguides (2) are configured to improve the beam quality of radiation emitted by the laser diodes (3). Advantageously, the apparatus can be configured such that the optical radiation (15) emitted by the first amplifying waveguide (1) has a higher brightness when the second amplifying waveguide (2) emits at a first wavelength.
    Type: Application
    Filed: July 28, 2004
    Publication date: August 24, 2006
    Inventors: Malcolm Varnham, Mikhail Zervas, David Payne, Lars Johan Nilsson
  • Publication number: 20060013545
    Abstract: Apparatus comprising an optical fibre (1) having a waveguide (2) and at least one stress applying region (3): in which the waveguide (2) is defined by a numerical aperture; the stress applying region (3) has a depressed refractive index; the optical fibre (1) is configured such that the waveguide (2) supports at least two polarised fundamental modes, two polarised first second-order modes, and two polarised second second-order modes; the waveguide (2) comprises a gain medium (4); and the stress applying region (3), the waveguide (2)and the disposition of the gain medium (4) are such as to provide preferential guidance to at least one of the modes at an operating wavelength.
    Type: Application
    Filed: September 25, 2003
    Publication date: January 19, 2006
    Inventors: Malcolm Varnham, Paul Turner, Mikhail Zervas
  • Publication number: 20050152645
    Abstract: Apparatus for filtering optical radiation at an operating wavelength (19), which apparatus comprises a grating (1) written into a waveguide (2), and which grating (1) has a first end (3), a second end (91), a first bandwidth (24), a maximum reflectivity (29), a first group delay variation (17) defined with respect to the first end (3), and a second group delay variation (18) defined with respect to the second end (91), wherein the first and second group delay variations (17), (18) are with respect to the first bandwidth (24), the maximum reflectivity (29) is greater than 50%, the first group delay variation (17) is between 0.1 ps and 100 ps, and the second group delay variation (18) is between 0.1 ps and 100 ps.
    Type: Application
    Filed: November 6, 2002
    Publication date: July 14, 2005
    Inventors: Michael Durkin, Mikhail Zervas
  • Publication number: 20050105850
    Abstract: Apparatus for dispersion compensating a signal (18) that propagates along a signal path (19), which apparatus comprises a grating (1) and a tuning means (2). The grating (1) is characterized by a wavelength operating range (3) and a group delay (4) that varies with wavelength (5), wherein the group delay (4) is equal at a plurality of pairs of wavelengths (6), (7) that are separated within the wavelength operating range (3), and wherein the grating (1) reflects each wavelength pair (6) from the same region (8) of the grating (1), and different wavelength pairs (7) from different regions (9) of the grating (1).
    Type: Application
    Filed: March 10, 2003
    Publication date: May 19, 2005
    Inventor: Mikhail Zervas