{ "schema_version": 1, "title": "Repro - High-accuracy sampling for diffusion models and log-concave distributions", "emoji": "🎯", "space_id": "agharsallah/71132-logbook", "paper": { "arxiv_id": null, "openreview_id": "71132", "icml_id": "71132", "title": "High-accuracy sampling for diffusion models and log-concave distributions", "forum": "https://openreview.net/forum?id=71132" }, "tags": [ "icml2026-repro", "paper-71132" ], "updated_at": "2026-07-25T03:10:15+00:00", "root": { "slug": "index", "title": "Repro - High-accuracy sampling for diffusion models and log-concave distributions", "file": "pages/index.md", "children": [ { "slug": "overview-method", "title": "Overview & Method", "file": "pages/overview-method/page.md", "children": [] }, { "slug": "claim-1-the-diffusion-sampler-attains-delta-error-in", "title": "Claim 1: The diffusion sampler attains delta-error in", "file": "pages/claim-1-the-diffusion-sampler-attains-delta-error-in/page.md", "children": [] }, { "slug": "claim-2-under-minimal-data-assumptions-the-diffusio", "title": "Claim 2: Under minimal data assumptions, the diffusio", "file": "pages/claim-2-under-minimal-data-assumptions-the-diffusio/page.md", "children": [] }, { "slug": "claim-3-when-the-data-distribution-has-intrinsic-dim", "title": "Claim 3: When the data distribution has intrinsic dim", "file": "pages/claim-3-when-the-data-distribution-has-intrinsic-dim/page.md", "children": [] }, { "slug": "claim-4-under-a-non-uniform-lipschitz-condition-the", "title": "Claim 4: Under a non-uniform Lipschitz condition, the", "file": "pages/claim-4-under-a-non-uniform-lipschitz-condition-the/page.md", "children": [] }, { "slug": "claim-5-the-same-framework-yields-a-polylog-1-delta", "title": "Claim 5: The same framework yields a polylog(1/delta)", "file": "pages/claim-5-the-same-framework-yields-a-polylog-1-delta/page.md", "children": [] }, { "slug": "conclusion", "title": "Conclusion", "file": "pages/conclusion/page.md", "children": [] } ] }, "agent_view_tokens": 5367, "revision": "1784949015808219000" }