![]() Use the class kit license version instead by adding "-ckl" to the end of the command: comsol51 -cklĬOMSOL has a support forum available on their website:.If you get this error, pictured below, this means you are trying to use the research licensed COMSOL without a license.Type ‘comsol’ command and then press the 'esc' key, you will see the other versions installed.To access a certain version of COMSOL use the comsolxx command - replace the x's with the version number.Typing "comsol" into the command line will open the current default version of COMSOL.There are several versions installed in "/usr/local/apps". In the Linux environment, users can access COMSOL using the comsol command. On graduate desktop computers with Windows, COMSOL can be installed from Software Center. This is not allowed to be used for research View Realtime LicensingĬOMSOL licenses currently in use: Access To The SoftwareĬomsol Classkit version is available in computer labs, and remotely through Citrix Xen Desktop. COMSOL on graduate desktop computers or Citrix is not allowed to be used for research unless a research license is purchased. The classkit license for COMSOL is available to all Engineering students.ĬOMSOL can be installed on graduate desktop computers using Software Center (research version only). Windows Desktop computers, Linux, and Citrix. Please include your sponsoring professors information. ![]() Contact support for information and pricing. The College of Engineering has a classkit license for COMSOL Multiphysics available to be used only for non-research purposes.ĬOMSOL can be used for research only by purchasing a license. ![]() 2019, 181420 (2019) (see DOI: 10.1002/adom.COMSOL Multiphysics is a simulation tool for electrical, mechanical, fluid flow, and chemical applications. Matlab implementation of the effective medium technique that has been detailed in. Magneto-optical nanowire effective medium codes The technique that has been detailed in MRS Communications 6, 23-29 (2016) (see DOI: 10.1557/mrc.2016.5) zip file run emtAnisExample.m file source codes. The attached functions calculate the field distributions, as well as effective medium parameters.ĭownload the. Therefore, the unit cell must be subwavelength, but the concentration of nanowires inside the unit cell does not have to be small. The code relies on quasistatic approximation, but is not limited to the dipole approximation. It is assumed that the unit cell of the composite has rectangular shape, and the nanowire itself has (possibly-multishelled) cylindrical structure. The ( zipped matlab) file contains matlab functions required to calculate effective medium properties of nanowire composites. Large-concentration nanowire effective medium codes It can be also utilized to calculate transmission/reflection of arbitrary layered structure.Ī versatile implmentation of the Rigorous Coupled Wave Analysis, capable of calculating optical response of periodic materials with two-dimensional unit cell. The code calculates transmission through thin slits in perfectly conducting screens for variety of materials. This compiled matlab code runs under MS Windows 圆4 it requires Matlab Compiler Runtime for Matlab R2012b (free download from ). The larger file contains solutions Beaming wavelength is close to 9.5 micronsĬalculating transmission through subwavelength slits The smaller file contains the geometry and model settings it needs to be run to generate meshes and solutions. The model does a parametric sweep over 7.14 wavelength range, and requires ~2Gb RAM to run. The files, that can be opened in COMSOL Multiphysics 3.5 illustrate a typical geometry/meshing settings used for design of plasmonic beaming structures and for analysis of their performance. The package contains the implementation of the mode-matching formalism capable of calculating the field distribution in an array of planar waveguides both open guides and closed guides are supported, and coupling between the system supporting different number of modes, yielding rectangular Transfer Matrices, is implemented.Ĭalculating mid-field profiles of plasmonic structures Zip [reference the The code can calculate Reflectance and Transmittance of an array of metal/dielectric/uniaxial layers, calculate dispersion of waveguide modes suppported by the multilayer systems, as well as to calculate field distribution in the layered structures. Reference to this www or to original publication is requested. You are free to download and use these in your research or applications. Here you will find some of the codes developed and used in our group for applied electromagnetic projects.
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