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Apparatus for separating a light beam by using two flat plates with an air gap therebetween and hybrid dichroic mirrors and a method therefor

  • US 6,072,633 A
  • Filed: 06/04/1998
  • Issued: 06/06/2000
  • Est. Priority Date: 07/12/1997
  • Status: Expired due to Fees
First Claim
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1. An apparatus for separating an incident light beam generated by a light source into three light beams having first, second, and third wavelengths different from one another using two flat plates comprising:

  • a material disposed between the two flat plates, the material being one of air or gas;

    a first dichroic mirror formed on a first one of the two flat plates for allowing only a light beam with the first wavelength from the light beam generated by the light source to penetrate and reflecting light beams with other wavelengths from the light beam generated by the light source;

    a wide band high-reflection mirror formed on a second one of the two flat plates for reflecting the light beam reflected from the first dichroic mirror within the material;

    a second dichroic mirror formed on the first one of the two flat plates for allowing only a light beam with the second wavelength to penetrate in a direction that is parallel to the light beam with the first wavelength penetrated through the first dichroic mirror and reflecting the light beam with the third wavelength within the material from the light beam reflected from the wide band high-reflection mirror;

    the wide band high-reflection mirror reflecting the light beam which is reflected by the second dichroic mirror within the material and past the second dichroic mirror without passing through the second dichroic mirror, in a direction that is parallel to the light beam with the second wavelength penetrated through the second dichroic mirror, the wide band high-reflection mirror being positioned such that it is parallel to the first mirror and the second dichroic mirror and spaced therefrom by a predetermined interval; and

    wherein the incident light beam and the reflected light beams pass through the material, which is positioned between the first, second dichroic mirrors and the wide band high-reflection mirror, andwherein the flat plate having the first and second dichroic mirrors is positioned above the flat plate with the wide band high-reflection mirror, so that the incident light beam, coming from a direction opposite to the flat plate with the wide band high-reflection mirror with respect to the flat plate with the first and second dichroic mirrors, hits the first dichroic mirror first.

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