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Flying with Photons: Rendering Novel Views of Propagating Light

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arxiv 2404.06493 v3 pith:UGOSLD7Z submitted 2024-04-09 cs.CV eess.IV

classification cs.CVeess.IV
keywords lightrenderingeffectscameradatasetdelaysfieldimaging
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We present an imaging and neural rendering technique that seeks to synthesize videos of light propagating through a scene from novel, moving camera viewpoints. Our approach relies on a new ultrafast imaging setup to capture a first-of-its kind, multi-viewpoint video dataset with picosecond-level temporal resolution. Combined with this dataset, we introduce an efficient neural volume rendering framework based on the transient field. This field is defined as a mapping from a 3D point and 2D direction to a high-dimensional, discrete-time signal that represents time-varying radiance at ultrafast timescales. Rendering with transient fields naturally accounts for effects due to the finite speed of light, including viewpoint-dependent appearance changes caused by light propagation delays to the camera. We render a range of complex effects, including scattering, specular reflection, refraction, and diffraction. Additionally, we demonstrate removing viewpoint-dependent propagation delays using a time warping procedure, rendering of relativistic effects, and video synthesis of direct and global components of light transport.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Blurred LiDAR for Sharper 3D: Robust Handheld 3D Scanning with Diffuse LiDAR and RGB

    eess.IV 2024-11 conditional novelty 6.0 of 10

    A diffuse, wide-field LiDAR paired with RGB and an adaptive loss improves 3D reconstruction over sparse LiDAR in low-texture and low-light scenes.

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