Toward BxDF display using multilayer diffraction

Author:

Ye Genzhi1,Jolly Sundeep2,Bove V. Michael2,Dai Qionghai3,Raskar Ramesh2,Wetzstein Gordon4

Affiliation:

1. MIT Media Lab and Tsinghua University

2. MIT Media Lab

3. Tsinghua University

4. MIT Media Lab and Stanford University

Abstract

With a wide range of applications in product design and optical watermarking, computational BxDF display has become an emerging trend in the graphics community. In this paper, we analyze the design space of BxDF displays and show that existing approaches cannot reproduce arbitrary BxDFs. In particular, existing surface-based fabrication techniques are often limited to generating only specific angular frequencies, angle-shift-invariant radiance distributions, and sometimes only symmetric BxDFs. To overcome these limitations, we propose diffractive multilayer BxDF displays. We derive forward and inverse methods to synthesize patterns that are printed on stacked, high-resolution transparencies and reproduce prescribed BxDFs with unprecedented degrees of freedom within the limits of available fabrication techniques.

Funder

National Natural Science Foundation of China

China Scholarship Council

Division of Information and Intelligent Systems

National Key Foundation for Exploring Scientific Instrument

Natural Sciences and Engineering Research Council of Canada

Massachusetts Institute of Technology

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

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4. Bastiaans M. 1997. Application of the Wigner distribution function in optics. The Wigner Distribution -- Theory and Applications in Signal Processing 375--426. Bastiaans M. 1997. Application of the Wigner distribution function in optics. The Wigner Distribution -- Theory and Applications in Signal Processing 375--426.

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