IPP team: Photonics Instrumentation and Processes

Difference between revisions of "Photonics Modeling and Simulation"

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'''P. Gérard''', S. Lecler, P. Twardowski
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[[fr:Modélisation et simulation photonique]]
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'''P. Gérard''', M. Flury, S. Lecler, P. Twardowski
  
The trend towards microscopic and nanoscopic scales requires simulation tools based on wave optics. Our research works use simulation softwares ranging from Code V or LightTools to softwares based on rigorous vectorial methods such as the Finite Difference Time Domain (FDTD), the Finite Elements Methods (FEM) or the Radiation Spectrum Method (RSM).
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These tools are now considered as '''CAD facilities'''.
  
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'''The trend towards microscopic and nanoscopic scales requires simulation tools based on wave optics'''.
  
We focus our efforts specifically on the interaction between  an optical beam and subwavelength stuctures. To do so, we develop dedicated simulation tools. We study of that way components that can be used inside measurement systems for medical applications or can be used for the control of process in photonics.
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<gallery widths=200px heights=150px>
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File:lentille_effectif.jpg|Simulation of an effective medium Fresnel Lens
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File:Simul franges blanches.jpg|1D simulation of white light fringes
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</gallery>
  
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Our research work uses simulation software ranging from ray tracing : '''Code V, LightTools, Zemax OpticStudio14.2'''
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to software based on rigorous vectorial methods such as:
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*'''FDTD''': Finite Difference Time Domain,
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*'''FEM''': Finite Element Methods,
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*'''RSM''': Radiation Spectrum Method,
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*'''FMM''': Fourier Modal Method,
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*'''MIE''': generalized Mie theory.
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Particular effort is focused on the interaction between an optical beam and subwavelength structures. To do this, we develop dedicated simulation tools. The components studied are used in measurement systems for medical applications or for use in the control of photonics processes.
  
 
*[[Photonics Modeling and Simulation:RSM|Radiation Spectrum Method]]
 
*[[Photonics Modeling and Simulation:RSM|Radiation Spectrum Method]]

Latest revision as of 16:25, 17 December 2016

P. Gérard, M. Flury, S. Lecler, P. Twardowski

These tools are now considered as CAD facilities.

The trend towards microscopic and nanoscopic scales requires simulation tools based on wave optics.

Our research work uses simulation software ranging from ray tracing : Code V, LightTools, Zemax OpticStudio14.2

to software based on rigorous vectorial methods such as:

  • FDTD: Finite Difference Time Domain,
  • FEM: Finite Element Methods,
  • RSM: Radiation Spectrum Method,
  • FMM: Fourier Modal Method,
  • MIE: generalized Mie theory.

Particular effort is focused on the interaction between an optical beam and subwavelength structures. To do this, we develop dedicated simulation tools. The components studied are used in measurement systems for medical applications or for use in the control of photonics processes.