High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis

This manuscript completes the analysis of our SIGGRAPH 2013 paper "Fabricating BRDFs at High Spatial Resolution Using Wave Optics" in which photolithography fabrication was used for manipulating reflectance effects. While photolithography allows for precise reflectance control, it is costl...

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Main Authors: Levin, Anat, Glasner, Daniel, Xiong, Ying, Durand, Fredo, Freeman, William, Matusik, Wojciech, Zickler, Todd
Other Authors: Fredo Durand
Published: 2013
Online Access:http://hdl.handle.net/1721.1/78590
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author Levin, Anat
Glasner, Daniel
Xiong, Ying
Durand, Fredo
Freeman, William
Matusik, Wojciech
Zickler, Todd
author2 Fredo Durand
author_facet Fredo Durand
Levin, Anat
Glasner, Daniel
Xiong, Ying
Durand, Fredo
Freeman, William
Matusik, Wojciech
Zickler, Todd
author_sort Levin, Anat
collection MIT
description This manuscript completes the analysis of our SIGGRAPH 2013 paper "Fabricating BRDFs at High Spatial Resolution Using Wave Optics" in which photolithography fabrication was used for manipulating reflectance effects. While photolithography allows for precise reflectance control, it is costly to fabricate. Here we explore an inexpensive alternative to micro-fabrication, in the form of metallic powders. Such powders are readily available at a variety of particle sizes and morphologies. Using an analysis similar to the micro-fabrication paper, we provide guidelines for the relation between the particles' shape and size and the reflectance functions they can produce.
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spelling mit-1721.1/785902019-04-10T13:17:40Z High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis Levin, Anat Glasner, Daniel Xiong, Ying Durand, Fredo Freeman, William Matusik, Wojciech Zickler, Todd Fredo Durand Computer Graphics This manuscript completes the analysis of our SIGGRAPH 2013 paper "Fabricating BRDFs at High Spatial Resolution Using Wave Optics" in which photolithography fabrication was used for manipulating reflectance effects. While photolithography allows for precise reflectance control, it is costly to fabricate. Here we explore an inexpensive alternative to micro-fabrication, in the form of metallic powders. Such powders are readily available at a variety of particle sizes and morphologies. Using an analysis similar to the micro-fabrication paper, we provide guidelines for the relation between the particles' shape and size and the reflectance functions they can produce. 2013-04-24T18:00:04Z 2013-04-24T18:00:04Z 2013-04-24 http://hdl.handle.net/1721.1/78590 MIT-CSAIL-TR-2013-008 4 p. application/pdf
spellingShingle Levin, Anat
Glasner, Daniel
Xiong, Ying
Durand, Fredo
Freeman, William
Matusik, Wojciech
Zickler, Todd
High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis
title High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis
title_full High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis
title_fullStr High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis
title_full_unstemmed High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis
title_short High Spatial Resolution BRDFs with Metallic powders Using Wave Optics Analysis
title_sort high spatial resolution brdfs with metallic powders using wave optics analysis
url http://hdl.handle.net/1721.1/78590
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