Abstract
Some diffusion posterior samplers construct Gaussian-tilted intermediate distributions along the reverse process. We observe that these targets can be pulled back to clean-space posteriors with weaker conditioning, with samples transported analytically to the corresponding noisy-space target through a Gaussian bridge. For the sequential Monte Carlo (SMC) sampler MCGDiff, the effective observation variance of this pulled-back problem is up to twice the diffusion-noise variance. We exploit this structure to initialize MCGDiff directly at an intermediate time: an approximate solver samples the softened clean-space posterior, the Gaussian bridge maps these samples to the tilted target, and only the remaining SMC suffix is run. This trades asymptotic consistency for finite-particle performance. With moment-matching posterior sampling (MMPS) as the solver, the hybrid improves sliced Wasserstein distance by roughly $2\times$ at matched particle count on a structured Gaussian-mixture inverse problem, and by more than an order of magnitude when the posterior-relevant mode is rare under the prior. A prior-initialization control, which retains the bridge but drops the clean-space conditioning, shows that on MCGDiff's standard Gaussian-mixture benchmark most of the improvement is insensitive to the conditioning. Conditioning the initialization gives a further consistent gain on the structured problem, and becomes decisive on a rare-mode problem, where resampling cannot repopulate a mode absent from the initial population.
Keywords
Subject
Publication details
- Journal
- Not available
- Open access
- Green open access
Cite this article
APA 7
Bellchambers, G. D. (2026). Direct Intermediate Initialization for Tilted Diffusion Samplers. https://omanscience.com/en/articles/direct-intermediate-initialization-for-tilted-diffusion-samplers
MLA 9
Bellchambers, Gregory D. "Direct Intermediate Initialization for Tilted Diffusion Samplers." https://omanscience.com/en/articles/direct-intermediate-initialization-for-tilted-diffusion-samplers.
Chicago (author–date)
Bellchambers, Gregory D. 2026. "Direct Intermediate Initialization for Tilted Diffusion Samplers." https://omanscience.com/en/articles/direct-intermediate-initialization-for-tilted-diffusion-samplers.
Harvard
Bellchambers, G. D. (2026) 'Direct Intermediate Initialization for Tilted Diffusion Samplers', Available at: https://omanscience.com/en/articles/direct-intermediate-initialization-for-tilted-diffusion-samplers.
Vancouver
Bellchambers GD. Direct Intermediate Initialization for Tilted Diffusion Samplers. https://omanscience.com/en/articles/direct-intermediate-initialization-for-tilted-diffusion-samplers
IEEE
G. D. Bellchambers, "Direct Intermediate Initialization for Tilted Diffusion Samplers," https://omanscience.com/en/articles/direct-intermediate-initialization-for-tilted-diffusion-samplers.