IP Library Granted Patent US 8,325,166
Granted Patent B2
US 8,325,166 · App. 12/481,284 · Granted Dec 4, 2012

Optical device and virtual image display device including volume hologram gratings

Assignee: Sony Corporation
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Quick Facts
Patent No.
US 8,325,166
App. No.
12/481,284
Granted
Dec 4, 2012
Kind
B2
Abstract

An optical device includes: a light guide plate receiving, for each of N types of wavelength bands, a plurality of parallel light beams with different incident angles each corresponding to view angles, and guiding the received parallel light beams; a first and a second volume hologram gratings of reflection type having a diffraction configuration which includes N types of interference fringes each corresponding to the N types of wavelength bands, and diffracting/reflecting the parallel light beams. The optical device satisfies for each wavelength band, a relationship of ‘P>L’, where ‘L’ represents a central diffraction wavelength in the first and second volume hologram gratings, defined for a parallel light beam corresponding to a central view angle, and ‘P’ represents a peak wavelength of the parallel light beams.

Claims (14)

1. An optical device comprising:

a light guide plate receiving, for each of N types, where N is an integer of 1 or more, of wavelength bands, a plurality of parallel light beams with different incident angles each corresponding to view angles within a predetermined view angle range, each of the parallel light beams traveling in parallel, and the light guide plate guiding the received parallel light beams according to principle of total inner reflection;

a first volume hologram grating of reflection type having a diffraction configuration which includes N types of interference fringes each corresponding to the N types of wavelength bands, and diffracting and reflecting the parallel light beams which have entered the light guide plate, so as to be reflected inside the light guide plate according to the principle of total inner reflection; and

a second volume hologram grating of reflection type having a diffraction configuration which includes N types of interference fringes each corresponding to the N types of wavelength bands, and diffracting and reflecting the parallel light beams which have propagated inside the light guide plate according to the principle of total inner reflection, so as to be emitted from the light guide plate as they are in parallel, respectively, and wherein a diffraction efficiency of the second volume hologram grating is constant throughout the second volume hologram grating,

wherein the optical device is configured, for a wavelength band selected from the N types of wavelength bands, to satisfy a relationship of ‘P>L’, where ‘L’ represents a central diffraction wavelength in the first and second volume hologram gratings, the central diffraction wavelength being defined for a parallel light beam corresponding to a central view angle, and ‘P’ represents a peak wavelength of the parallel light beams which is to enter the light guide plate.

2. A virtual image display comprising:

an image forming section displaying an image through the use of light for N types, where N is an integer of 1 or more, of wavelength bands;

a collimating optical system converting light beams for the N types of wavelength bands emitted from the image forming section into parallel light beams;

a light guide plate receiving, through the collimating optical system, for each of the N types of wavelength bands, a plurality of the parallel light beams with different incident angles each corresponding to view angles within a predetermined view angle range, each of the parallel light beams traveling in parallel, and the light guide plate guiding the received parallel light beams according to principle of total inner reflection;

a first volume hologram grating of reflection type having a diffraction configuration which includes N kinds of interference fringes each corresponding to the N types of wavelength bands, and diffracting and reflecting the parallel light beams which have entered the light guide plate, so as to be reflected inside the light guide plate according to the principle of total inner reflection; and

a second volume hologram grating of reflection type having a diffraction configuration which includes N types of interference fringes each corresponding to the N types of wavelength bands, and diffracting and reflecting the parallel light beams which have propagated inside the light guide plate according to the principle of total inner reflection, so as to be emitted from the light guide plate as they are in parallel, respectively, and wherein a diffraction efficiency of the second volume hologram grating is constant throughout the second volume hologram grating,

wherein the virtual image display is configured, for a wavelength band selected from the N types of wavelength bands, to satisfy a relationship of ‘P>L’, where ‘L’ represents a central diffraction wavelength in the first and second volume hologram gratings, the central diffraction wavelength being defined for a parallel light beam corresponding to a central view angle, and ‘P’ represents a peak wavelength of the parallel light beams which is to enter the light guide plate.

3. The optical device of claim 1 , wherein the optical device is configured to satisfy the relationship ‘P>L’ by adjusting a spectrum distribution of an image display element.

4. The virtual image display of claim 2 , wherein the virtual image display is configured to satisfy the relationship ‘P>L’ by adjusting a spectrum distribution of an image display element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2009
From: AKUTSU, KATSUYUKI; NAKANO, SATOSHI; MUKAWA, HIROSHI
To: SONY CORPORATION
Reel/Frame 022854/0826 →
Priority Claims (1)
JP 2008-151430 · Jun 10, 2008 · national
Continuity (1)
Related Publication 20090303212A1 · Dec 10, 2009