![]() Spectroscopic ellipsometry meets AFM nanolithography: about hydration of bio-inert oligo(ethylene glycol)-terminated self assembled monolayers on gold. Ilaria Solano, Pietro Parisse, Federico Gramazio, Ornella Cavalleri, Gianangelo Bracco, Matteo Castronovo, Loredana Casalis, Maurizio Canepa.Exploiting Spectroscopic Ellipsometry and Atomic Force Nanolithography for the Investigation of Ultrathin Interfaces of Biologic Interest. Pietro Parisse, Ilaria Solano, Michele Magnozzi, Francesco Bisio, Loredana Casalis, Ornella Cavalleri, Maurizio Canepa. ![]() Modern Scattering‐Type Scanning Near‐Field Optical Microscopy for Advanced Material Research. Xinzhong Chen, Debo Hu, Ryan Mescall, Guanjun You, D.The Journal of Physical Chemistry Letters 2013, 4 Quantitative Measurement of Local Infrared Absorption and Dielectric Function with Tip-Enhanced Near-Field Microscopy. Govyadinov, Iban Amenabar, Florian Huth, P. Knockout is distributed under the MIT license.This article is cited by 22 publications. The source code is available at: Knockout JQuery is distributed under the MIT license. The source code is available at: Bootstrapīootstrap is distributed under the MIT license. The source code is available at: canvas2svgĬanvas2svg is distributed under the MIT license. FileSaver.jsįileSaver.js is distributed under the MIT license. Each third-party software package is provided under its own license. Ray Optics Simulation includes or depends upon the following third-party software, either in whole or in part. See the License for the specific language governing permissions and WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. Unless required by applicable law or agreed to in writing, softwareĭistributed under the License is distributed on an "AS IS" BASIS, You may not use this file except in compliance with the License. Licensed under the Apache License, Version 2.0 (the "License") If you create a useful tool, please submit a pull request to let others use your tool! (We will add the Chinese locales for it.) LicenseĬopyright 2016–2022 Yi-Ting Tu, Wei-Fang Sun ![]() And also include an exported SVG image (use the "export" button) of your tools in img/id_of_your_tool.svg cropped to a suitable size. You can just search for an existing tool id such as protractor or beamsplitter in simulator/ToolBarViewModel.js, simulator/index.html, simulator/index.js, and simulator/locales/en.js and add the corresponding lines for your tools. And when you want to choose the tool, execute AddingObjType = 'id_of_your_tool'. A way to quickly test your own toolsĪfter you complete the code objTypes =, a quick way to test it without modifying the toolbar is to execute the code directly in your browser's developer tool. For now, you can see the template for some explanations in English. I'm sorry that most of the comments in index.js are in Chinese. To view the code of an existing tool, you can search for objTypes = in index.js. The structure of a tool is described in the template here. ![]() Open simulator/index.html locally in you browser (or start an http server in the repo directory if "Sample" does not work). If you created a good sample, please submit a pull request to let others see your work! Quick Start Distance, angular, energy flow, and momentum flow measurements.View images that can be observed from some given position.View real images, virtual images, and virtual objects directly.View extensions of rays to see if they converge to a virtual image.Simulate ideal lens/mirror, which obeys lens/mirror equation.Simulate refraction in linear or circular interfaces, including both refracted and reflected rays.Simulate reflection in linear, circular, and parabolic mirror.Simulate various light sources: ray, beam, and point source.Simulate reflection and refraction of light.
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