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Device and method for carrying out spectrum-type magneto-optical Kerr effect test by using spectrograph

A magneto-optical Kerr effect and spectrometer technology, which is applied to the measurement of magnetic properties, polarization influence characteristics, etc., can solve the problems of time-consuming operation, complicated design, complicated structure, etc., and achieve the effects of convenient operation, low cost, and simple and practical optical path.

Inactive Publication Date: 2014-06-18
SHANDONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the receiving ends of the existing spectral magneto-optic Kerr effect devices are mostly photodetectors and have complex structures, such as the article "Fe 3 o 4 and Mg 2+ or Al 3+ replace Fe 3 o 4 Optical and Polar Magneto-Optic Kerr Spectroscopy Research" (by W.F.J.Fontijn and P.J.van der Zaag), the author uses a Ge material photodetector to receive the signal, and uses a xenon lamp and a monochromator to test the magneto-optical Kerr deflection angle of the material spectral curve
This system needs to adjust the monochromator successively to change the output wavelength and calculate the magneto-optical deflection angle at each wavelength successively. The design is more complicated and the operation is time-consuming.

Method used

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  • Device and method for carrying out spectrum-type magneto-optical Kerr effect test by using spectrograph
  • Device and method for carrying out spectrum-type magneto-optical Kerr effect test by using spectrograph
  • Device and method for carrying out spectrum-type magneto-optical Kerr effect test by using spectrograph

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Embodiment 1

[0034] Embodiment 1 of the present invention such as figure 1 As shown, a device for spectroscopic magneto-optical Kerr effect test using a spectrometer, including a white light source 1, a collimating mirror 2, a polarizer 3, two diaphragms 4 and 7, an electromagnet 6, a sample stage 5, Analyzer 8, quarter-wave plate 9, condenser 10, fiber coupler 11, spectrometer 12 and PC 13, characterized in that the white light source 1 is connected to the collimator 2 through an optical fiber, and after being focused by the collimator 2 Output white light; behind the collimating mirror 2, there are polarizer 3, two apertures 4 and 7, analyzer 8, condenser lens 10, fiber coupler 11 and spectrometer 12 arranged in sequence along the optical path; no need to place it when measuring the magneto-optical deflection angle Quarter-wave plate 9, and need place quarter-wave plate 9 before condenser lens 10 behind analyzer 8 when measuring ellipsometry; Place sample stage 5 between two apertures 4 ...

Embodiment 2

[0039] A method for measuring the magneto-optic Kerr deflection angle using the above-mentioned device, the steps are as follows:

[0040] ① Connect the measuring device to the power supply, supply power to the spectrometer, turn on the power of the electromagnet, the white light source and the power of the PC;

[0041] ② Fix the thin film sample material with ferromagnetic properties on the sample stage, adjust the sample to rotate in the horizontal direction, so that the surface of the sample is parallel to the direction of the magnetic field;

[0042] ③The white light source is connected to the collimator through optical fiber, adjust the positions of the diaphragm and polarizer placed behind the collimator, and then adjust the positions of the analyzer, condenser, and fiber coupler so that the white light is incident on the polarizer and can be converged to the fiber coupler through the above-mentioned optical components;

[0043] ④ After the PC is turned on, run the spectr...

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Abstract

The invention provides a device and a method for carrying out a spectrum-type magneto-optical Kerr effect test by using a spectrograph. The device comprises a white-light light source, a collimating lens, a polarizer, two diaphragms, an electromagnet, a sample platform, a polarization analyzer, a collecting lens, an optical fiber coupling device, a spectrograph and a PC (Personal Computer) machine. The device is characterized in that the white-light light source is connected with the collimating lens by an optical fiber and white light is output after the white-light light source is focused by the collimating lens; the polarizer, the two diaphragms, the polarization analyzer, the collecting lens, the optical fiber coupling device and the spectrograph are arrayed behind the collimating lens along a light path sequentially; a quarter-wave plate needs to be arranged behind the polarization analyzer and in front of the collecting lens when the ellipsometry rate is measured and the quarter-wave plate does not need to be placed when a magneto-optical deflection angle is measured; the sample platform is arranged between the two diaphragms and the sample platform is located in the middle of the electromagnet; the optical fiber coupling device is connected with the spectrograph by the optical fiber; the output end of the spectrograph is connected with the PC machine; the spectrograph is controlled by the PC machine through programming and a result is output. The system has a simple light path, low in cost and high in data precision; a spectrum curve of the magneto-optical deflection angle can be formed.

Description

technical field [0001] The invention relates to a device and method for testing the spectral magneto-optical Kerr effect by using a spectrometer, and belongs to the technical field of spectral magneto-optic Kerr effect testing. Background technique [0002] With the wide application of magnetic materials in magneto-optical storage media and semiconductor devices, the research on the magneto-optical properties of magnetic materials has become extremely urgent. The magneto-optical Kerr effect test technology uses the magneto-optic Kerr effect of magnetic materials to measure the magneto-optical deflection angle and ellipticity of magnetic materials. Therefore, the magneto-optical Kerr effect is widely used in the research of magnetic ordering, magnetic anisotropy, and interlayer coupling. However, the receiving ends of the existing spectral magneto-optic Kerr effect devices are mostly photodetectors and have complex structures, such as the article "Fe 3 o 4 and Mg 2+ or Al...

Claims

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Application Information

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IPC IPC(8): G01N21/21G01R33/12
Inventor 连洁王晓张福军孙兆宗赵明琳张文赋高尚
Owner SHANDONG UNIV
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