IP Library › Granted Patent US 11,567,732
Granted Patent B2
US 11,567,732 · App. 16/603,906 · Granted Jan 31, 2023

Pseudo speckle pattern generation device, pseudo speckle pattern generation method, observation device, and observation method

Inventors: Hiroto Sakai (Hamamatsu, JP); Taro Ando (Hamamatsu, JP); Haruyoshi Toyoda (Hamamatsu, JP); Yoshiyuki Ohtake (Hamamatsu, JP); Yuu Takiguchi (Hamamatsu, JP); Tomoko Hyodo (Hamamatsu, JP)
Assignee: HAMAMATSU PHOTONICS K.K.
G06F7/582G06F7/58G02B21/06G02B27/48G03H1/12G03H1/16
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Quick Facts
Patent No.
US 11,567,732
App. No.
16/603,906
Granted
Jan 31, 2023
Kind
B2
Abstract

A pseudo speckle pattern generation apparatus includes a light source, a beam expander, and a spatial light modulator. The spatial light modulator has an intensity modulation distribution based on a pseudo speckle pattern calculated from a pseudo random number pattern and a correlation function, receives light output from the light source and increased in beam diameter by the beam expander, spatially modulates the received light according to the modulation distribution, and outputs modulated light.

Claims (16)

1. A pseudo speckle pattern generation method comprising:

using a spatial light modulator having a settable intensity modulation distribution;

setting the settable intensity modulation distribution of the spatial light modulator based on a pseudo random number pattern and a correlation function;

spatially modulating light output from a light source according to the settable intensity modulation distribution and outputting modulated light as a pseudo speckle pattern;

setting, as a first pattern, the pseudo random number pattern having a statistical distribution according to a light intensity statistical distribution of the pseudo speckle pattern to be generated;

setting, as a second pattern, a pattern of inverse Fourier transform of a square root of Fourier transform of the correlation function according to an autocorrelation function of the pseudo speckle pattern to be generated; and

setting the settable intensity modulation distribution based on a pattern of convolution integral of the first pattern and the second pattern in the spatial light modulator.

2. The pseudo speckle pattern generation method according to claim 1 , comprising using an imaging optical system configured to receive light output from the spatial light modulator and forming an image of the pseudo speckle pattern on a light pattern generation plane.

3. A pseudo speckle pattern generation method comprising:

using a spatial light modulator having a settable phase modulation distribution;

setting a computer generated hologram obtained based on a pseudo random number pattern and a correlation function as the settable phase modulation distribution of the spatial light modulator;

spatially modulating light output from a light source according to the settable phase modulation distribution and outputting modulated light;

by a reproducing optical system configured to receive light output from the spatial light modulator, reproducing a pseudo speckle pattern on a light pattern generation plane;

setting, as a first pattern, the pseudo random number pattern having a statistical distribution according to a light intensity statistical distribution of the pseudo speckle pattern to be generated;

setting, as a second pattern, a pattern of inverse Fourier transform of a square root of Fourier transform of the correlation function according to an autocorrelation function of the pseudo speckle pattern to be generated; and

setting the settable phase modulation distribution based on a pattern of convolution integral of the first pattern and the second pattern in the spatial light modulator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2019
From: SAKAI, HIROTO; ANDO, TARO; TOYODA, HARUYOSHI; OHTAKE, YOSHIYUKI; TAKIGUCHI, YUU; HYODO, TOMOKO
To: HAMAMATSU PHOTONICS K.K.
Reel/Frame 050666/0012 →
Priority Claims (1)
JP JP2017-077475 · Apr 10, 2017 · national
Continuity (1)
Related Publication 20200041810A1 · Feb 6, 2020