1. Field of the Invention
This invention relates to a spatial light modulator applied to a collinear volume holographic storage system, and, especially, to a spatial light modulator that can enhance the convergence of the point spread function of this system.
2. Description of the Prior Art
The collinear holographic storage system is the main development in these years, since the collinear holographic technique has the features of high stability, high reliability and high miniaturability.
In the writing process, the collinear holographic storage system uses a spatial light modulator to generate a signal light and a reference light as a laser light passes the spatial light modulator. After the signal light and the reference light pass a phase modulating mask, the interference will be focused by a lens and recorded homogeneously on a recording medium. In the reading process, the laser light is modulated to a reference light and irradiates on the recording medium to restore the signal via the recorded interference. Finally, the restored light irradiates on a photo-detector and can be read.
a is employed to illustrate the light path of the system in the writing process. The spatial light modulator 200 modulates the incident light 100 to a signal light 110 and a reference light 120, and a lens 300 focus the interference of the signal light 110 and the reference light 120 on a recording medium 400 to be recorded.
b is employed to illustrate the light path of the system in the reading process. The spatial light modulator 200 modulates the incident light 100 to a reference light 120 only, and, after the reference light 120 passes the lens 300, the reference light 120 irradiates on the recording medium 400 to restore the signal light 110 and the reference light 120 via the recorded interference. The restored interference is focused on and irradiates on a photo-detector 600 and can be read.
The structure of a reflective holographic storage system is different from the transmissive system, abovementioned system, but in the similar theory. The rear face of the recording medium 400 is coated with a reflective material 410, and a splitter 700 is set in the light path. In the writing process, the signal light 110 and the reference light 120 pass the splitter 700 and lens 300 to irradiate on the recording medium 400. In the reading process, the reference light 120 is reflected by the reflective material 410 after passing the splitter 700 and lens 300 to restore the interference. The restored interference passes the splitter 700 and will be reflected to a photo-detector 600 for reading. The light paths in the writing process and reading process are shown in
The above mentioned spatial light modulator has a disadvantage of poor convergence of the point spread function.
It is an object to provide a spatial light modulator for improving the convergence of the point spread function. The mean is to set a phase modulator surrounding an amplitude modulator.
In the writing process, the spatial light modulator modulates the surrounding portion of the incident light to a reference light and the center portion to a signal light. In reading, the center part of the spatial light modulator is blocked for avoiding generating the signal light, and the reference light will irradiate on the recording medium to restore the recorded interference.
a and
a and
a and
a-4g show spatial light modulators according to the preferred embodiments of this invention.
a-5k show phase modulators according to the preferred embodiments of this invention.
Spatial light modulator includes a amplitude modulator and a phase modulator with a hollow, and the amplitude modulator and the phase modulator can be arranged in compact or in separation. The surrounding portion of an incident light is modulated into a reference light by the phase modulator and the center portion to a signal light by the amplitude modulator. The interference of the reference light and the signal light will be recorded on a recording medium after passing a phase modulating mask. Accompanying with
In the writing process, as
In the reading process, as
Reflective holographic storage system works in a similar way to the transmissive holographic storage system so the detailed description is omitted here except for the difference. The difference between these two systems is that the former has a reflective material coated on the rear face of the recording medium, a splitter is set in the light path and the second lens (the second lens 500 in previous embodiment) can be omitted. The splitter will guide the restored interference light to the photo-detector.
The phase modulator and the amplitude modulator of the spatial light modulator can be set in compact or in separation, and even more, the phase modulator and the amplitude modulator can be set in interlace between the other optical components of the system. The preferred embodiments are showing in
a shows an embodiment, where the phase modulator 820 is adhered to a amplitude modulator 810.
For the embodiments of
For the embodiment of
For the embodiments of
The phase modulators 802 in abovementioned embodiments can be made from a lens with a hollow. The
a and
Although this invention has been explained in relation to its preferred embodiment, it is to be understood that modifications and variation can be made without departing the spirit and scope of the invention as claimed.
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97121204 A | Jun 2008 | TW | national |
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Number | Date | Country | |
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20090303560 A1 | Dec 2009 | US |