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WUXI SHINE OPTO-ELECTRONICS TECHNOLOGIES CO., LTD

Add :BLK H1,Jingyuan 128 Innovation Industrial Park, No.88 Qingyuan Avenue, YixingEDZ, Wuxi, China

Contact:Mr. Xiao 15995224775

Email:jonas.xiao@shinopto.com

Tel:+86-510-8032 0108

Fax:+86-510-8032 0109

Web:www.shinopto.com

PC:214213

 

WUXI SHINE OPTO-ELECTRONICS TECHNOLOGIES CO., LTD Beijing branch

Add: Room 230-1, Block B, Wuyue Building, No. 10, Wujianlou, Fengtai District, Beijing

Contact: Mr. Ma 13901381925

Email: bj@shinopto.com

Tel: 010-5613 6255

Fax: 010-8769 1233

Oxalis-Laser
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Commod Pro

  


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  Commod Pro

  Beam generation

  Commod Pro performs beam generation for either stable or unstable cavities. Longitudinal pumping is also performed prior to beam generation. Commod Pro can simulate multimode cavities for CW, passive and active Q-switched modes.

  Coherent beam propagation

  Commod Pro propagates any kind of coherent beam. The beam propagation, based on Fourier transform method, takes into account diffraction, spatial and temporal dispersion and shift, and Kerr effect. Commod Pro can propagate ultra-short pulses considering streching and compressing effects.

  Beam amplification

  Commod Pro manages 4 level solid state amplifiers with rod and slab geometries; gradient refractive index is also taken into account. Gain profile and thermal and mechanical effects are simulated by Spir and Thermopt respectively. Frantz and Nodvik model is used for amplification and gain saturation.

  Frequency conversion

  Frequency conversion is one of the most effective strength of Commod Pro. Indeed, Commod Pro performs intra-cavity and extra-cavity frequency conversion considering any kind of conversion, OPO, DFG, ppln…

  List of Commod Pro components

  - Sources (circular, rectangular, speckle, complex, experimental, complex)

  - Amplifiers and dynamic amplifiers (disk, rod, slab, refractive index gradient)

  - Frequency converters (type I, type II, OPA, SFG, DFG, SHG, OPO, ppln)

  - Apodizer (file, analytic, gaussian)

  - Saturable absorber (slow and fast)

  - Mirrors (flat, spherical, cylindrical, phase conjugaison)

  - Thick and thin lens (spherical, cylindrical, Fresnel)

  - Polarizer and birefringent polarizer

  - Pockels cell

  - Prisms

  - Grating (flat and focusing)

  - Quartz rotators and Faraday rotators

  - Spatial filter

  - Wave plate (random, bi-value, kinoform)

  - Wavefront corrector (gaussian, file)

  - Focuser

  - Spatial and multi-pass filters

  - Stimulated Raman/Brillouin scaterring

  Virtual components

  This is a very important feature of Commod Pro. Virtual components allow you to develop your own transfer function to simulate either new components or physical beam interactions and to implement them in Commod Pro. You will take advantage of Commod Pro capabilities and you will bring your own expertise in it. At the initial stage you create your virtual component and can insert it in the optical chain using Commod Pro system building interface. During the calculation the interaction between Commod Pro and your virtual component will be carry on througth output Commod Pro files exchange.

  Outputs

  - Beam characterization along the system (energy, optical and mechanical distances, wavelengths, modulation rate, peack intensity, beam position....)

  - Beam temporal profile

  - Beam intensity and phase profile for each step of time and component (two polarizations)

  - Fluence on each component

  - Residual gain

  - Histogram of fluence

  - Depolarization

  - ......

  I/O Characteristics

  - Export all results (spatial, temporal and gain profiles) as ASCII files for later data processing. Other formats are available.

  - Binary file

  - .DAT ASCII file containing system information

  Operating system

Windows 98 / NT / 2000 / Vista / Seven

  Commod Pro interface

  Commod Pro uses a very intuitive and exhaustive graphical user interface that allows to build optical systems very easely and get outputs all along the optical chain.

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