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5 Oct 2016 I would like to export the characteristics of this waveguide to INTERCONNECT. I use the Finite Difference Eigenmode Solver. I would like to ask whether or not it is OK to use “Metal" boundaries. Could i use other boudaries ? Also, my 500x220nm silicon waveguide has single mode transmission ? How can i
This page describes how to create a MODE Waveguide element, which enables users to import frequency-dependent properties (such as the effective index, loss, group index, dispersionetc) of a single- or multi-mode waveguide directly from MODE Solutions. This allows for a more detailed description of the waveguide,
At what waveguide width does each mode cutoff? ? When does the waveguide become single mode? ? If we want the waveguide to operate with a single TE mode, what waveguide width should we use? Questions. Waveguide cutoff conditions
7 Aug 2017 Hello, I need to ask three questions: The CW laser in interconnect, Is it a single mode laser ? and if not how can i turn it into single mode laser the produces only the fundamental mode? the waveguide in interconnect
27 Jan 2016 I want to optimize a waveguide geometry in lumerical MODE such that it is single mode. I tried to do it with a FDE monitor but could not use any function as findmode or nummodes. Does anyone know how to define an optimization sweep without scripting it totally yourself.
Value range. name. Defines the name of the element. MODE Waveguide. -. -. annotate. Defines whether or not to display annotations on the schematic editor. true. -. [true, false]. enabled Defines whether or not to use a single tap digital filter to represent the element transfer function in time domain. false. -. [true, false].
Objective When using the eigensolver in MODE Solutions or the mode source in FDTD Solutions, there are many eigensolver settings that can affect the modes found. For some
11 Jul 2017 Hi, I have a few questions about mode calculations in FDTD. My structure is a single strip SOI waveguide. Here is the file for details about the waveguide geometry : 1_strip_w=300nm_dRib=260nm.fsp (291.4 KB) Consideri
where E1 and E2 are the modes of the coupled waveguide system, and E10 and E20 are the unperturbed modes of the single waveguide positioned at location 1 or location 2 respectively. We see that the light propagates like the unperturbed waveguide system, but the oscillates back and forth between the 2 guides
Mode eigenmode solver and FDTD-based propgation technology to calculate waveguide transmission characteristics, bending loss, disperson, and propagation loss.
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