All-optical information exchange method based on second order nonlinearity

An all-optical information exchange and second-order nonlinear technology, which is applied in the field of optical communication, can solve problems such as complicated implementation methods, low efficiency of third-order nonlinear exchange, and no analysis and explanation, and achieve a simple and easy-to-implement solution, and suppress stimulated Bry source scattering effect, high efficiency effect

Active Publication Date: 2012-07-04
HUAZHONG UNIV OF SCI & TECH
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Problems solved by technology

[0003] The implementation of traditional wavelength-domain optical information exchange technology is relatively complicated, and usually requires multiple use of multiple wavelength converters
For example, if two optical wavelengths (λ S1 ,λ S2 ) carried data information, we can first use two optical filters for optical wavelength separation, and then use two wavelength converters to perform two wavelength conversions (λ S1 → lambda S2 ,λ S2 → lambda S1 ) to exchange information Additional optical filters are required after each wavelength converter to filter out the converted light (λ S2 ,λ S1 ), and finally combine the two optical wavelengths together. This process undergoes multiple optical filtering and optical wavelength conversion, whic

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  • All-optical information exchange method based on second order nonlinearity
  • All-optical information exchange method based on second order nonlinearity
  • All-optical information exchange method based on second order nonlinearity

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[0022] In the all-optical information exchange method of the present invention, a single optical device with second-order nonlinearity is selected, and the mechanism of combining the second-order nonlinear effect parameter attenuation and wavelength conversion can be realized in the entire optical domain to carry different data information. The information exchange function between wavelengths, and the information exchange is transparent to the data modulation format. Before using the method of the present invention for all-optical information exchange, it is necessary to select the wavelength of the required pump light according to the quasi-phase matching wavelength of the second-order nonlinear optical device, and at the same time provide the required pump light according to the conditions of the all-optical information exchange. The optical power of the pump light.

[0023] The present invention provides an all-optical information exchange method based on second-order nonline...

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Abstract

The invention discloses an all-optical information exchange method based on second order nonlinearity. The method selects a single optical device with the second order nonlinearity, utilizes a second order nonlinear effect parameter attenuation and wavelength conversion combined function mechanism, and can achieve the information exchange function among wavelength carrying different data information in an all-optical domain. Information exchange is transparent to data modulation modes. Before the all-optical information exchange is performed by using the method, required pumping light wavelength is selected according to quasi-phase matching wavelength of the optical device with the second order nonlinearity, and simultaneously required pumping light luminous power is given according to the generation condition of the all-optical information exchange. The method uses the single optical device and is simple in scheme and easy to achieve. For selection of the single optical device, optical waveguide with the second order nonlinearity can be used flexibly and is small in size and easy to integrate.

Description

technical field [0001] The invention belongs to the optical communication technology, and relates to an all-optical information exchange method, in particular to a method for realizing all-optical information exchange with transparent modulation format by using the combination of second-order nonlinear parameter attenuation and wavelength conversion. Background technique [0002] The 21st century is the age of information. With people's urgent demand for increasing information, high-speed, large-capacity, and flexible all-optical networks will become an inevitable trend in the development of broadband communication networks in the future, and the high-speed all-optical information processing at network nodes that matches it is very important . All-optical information processing is carried out in the all-optical domain, which can avoid the speed limit brought by the electronic bottleneck of traditional "optical-electrical-optical" information processing. At present, the res...

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Application Information

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IPC IPC(8): H04Q11/00H04B10/12G02F1/377
Inventor 王健
Owner HUAZHONG UNIV OF SCI & TECH
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