2015
DOI: 10.1145/2766988
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The SGGX microflake distribution

Abstract: Figure 1: Top-left: rendering a voxelized forest at decreasing levels of detail (left to right). Bottom-right: visualization of the voxel structure at the matching resolutions. We use the SGGX microflake distribution to represent volumetric anisotropic materials. Our representation supports downscaling and interpolation, resulting in smooth and antialiased renderings at multiple scales. AbstractWe introduce the Symmetric GGX (SGGX) distribution to represent spatially-varying properties of anisotropic microflak… Show more

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Cited by 69 publications
(74 citation statements)
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“…This generalized framework collapses to the standard isotropic case (1) when D is set to uniform [Jakob et al 2010]. In addition, it has been shown to be capable of closely capturing the appearance of complex materials such as fabrics and fur [Jakob et al 2010;Zhao et al 2011;Zhao et al 2012;Heitz et al 2015].…”
Section: Introductionmentioning
confidence: 90%
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“…This generalized framework collapses to the standard isotropic case (1) when D is set to uniform [Jakob et al 2010]. In addition, it has been shown to be capable of closely capturing the appearance of complex materials such as fabrics and fur [Jakob et al 2010;Zhao et al 2011;Zhao et al 2012;Heitz et al 2015].…”
Section: Introductionmentioning
confidence: 90%
“…Jakob et al [2010] later relaxed this assumption by modeling anisotropic media with structured micro-geometries. [Heitz et al 2015] has recently proposed a new anisotropic phase function offering fast evaluation and easy (linear) interpolation. We build our framework upon this state-of-the-art representation.…”
Section: Related Workmentioning
confidence: 99%
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