Introduction
Features
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Design Interface
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Mode
Solvers
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Taper Models
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Grating Models
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Bend Models
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Field and Modal Analysis
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Scanning Tools
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Link to PICWave
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Scripting / Optimisation
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GDSII Export
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Link to ray-tracing
Applications
Publications
Download Brochure
Request evaluation
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FIMMPROP Features
Modelling capability
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Unique 2D and 3D
EigenMode Expansion (EME)
tool
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Rigorous Maxwell Equation solver for semi
analytical, fully vectorial 3D propagation
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Includes a wide selection of
fully vectorial mode solvers, relying a variety of well-established numerical and semi-analytical methods
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Wide and narrow angle
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High index contrast capability - ideal for
silicon photonics
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Bidirectional algorithm models all internal
reflections
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Advanced
adative taper algorithms for the modelling of
tapered waveguides and arbitrary z-varying structures
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Choice of EME or RCMT (Rigorous Coupled Mode
Theory) for
efficient modelling of gratings and other periodic
structures
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Bidirectional Plane-Wave Expansion algorithm for
fast propagation through free-space regions
e.g. fibre ⇔ free-space gap ⇔ optical chip coupling
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Facet coating (AR coating) capability:
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arbitrary number of layers of arbitrary refractive index
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accounts for the angle and divergence of the
propagating beam
i.e. it does not assume a single plane-wave, unlike all usual
facet coating simulators
Built as part of our mode solver tool
FIMMWAVE, FIMMPROP supports all of
FIMMWAVE's features including the
Thermo-Optic Solver,
Electro-Optic Solver
and Stress Solver
Performance and efficiency
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Native 64-bit application (32-bit version also
available)
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Extensive support of multi-core
and multi-CPU computers to speed up your
simulations
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Fast design and simulation of MMI's, periodic structures,
tapers and bends! -
Takes advantage of any symmetry or
periodicity:
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Much faster and more accurate than BPM for a
wide range of devices
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More efficient than FDTD or FEM
in many cases
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Flexible design paradigm
and extensive component library
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Sophisticated field visualisation
Parameter scans, script automation and optimisation
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Scattering matrix approach offers
fast design
optimisation: FIMMPROP only recalculates what is needed when
modifying the design
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Scanner interface for single-parameter scans
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Multi-parameter optimisation with Kallistos (optional module) - see example here
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Extensive command-line interface, support for
scripting with Python and MATLAB
Export to circuit models and GDS-II
Link to ray-tracing tools
Click the links on the left for more Features information.
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