---
name: ★★★ Paper 145 v0.3 published — Zenodo DOI 取得 + IA mirror (2026-05-09)
description: ★★★★★ 2026-05-09 Paper 145 ("First D-FUMT₈ Silicon with SELF⟲ Logic Primitive") v0.3 publish 完了. **Zenodo DOI: 10.5281/zenodo.20091185** + Internet Archive mirror. Harvard skip (opt-in policy). 三者比較 paper 3 leg + 11 mandatory citations + 5 controllable claims を含む完全版 publish
type: project
originSessionId: 9dde5920-a295-4ec2-a48b-941a281b5da4
---
# Paper 145 v0.3 published (2026-05-09)

## ★ Publish 結果 — 11/11 platform (Harvard skip 込) 完了

藤本さん 2026-05-09 後半判断 (Option F + 残 8 site) で Paper 145 v0.3 を 11-platform 標準で publish 着手・完了:

### 第 1 段 (3 platform — STEP 1032 完了)
| Platform | 状態 | URL/DOI |
|---|---|---|
| ✅ **Zenodo (DOI)** | 公開済 | **`10.5281/zenodo.20091185`** |
| ✅ **Internet Archive** | 公開済 | https://archive.org/details/rei-aios-paper-145-v03-1778282272143 |
| ✅ **GitHub Release** | commit `bc1c1cee` push 済 | https://github.com/fc0web/rei-aios |

### 第 2 段 (残 8 platform — STEP 1033 完了)
| Platform | 状態 | URL |
|---|---|---|
| ✅ Dev.to | 公開済 | https://dev.to/fc0web/paper-145-first-d-fumt-8-silicon-with-self-reflexive-logic-primitive-three-substrate-24pn |
| ✅ Hatena Blog | 公開済 | https://fcwebfujimoto.hatenablog.com/entry/2026/05/09/082943 |
| ✅ HackMD | 公開済 | https://hackmd.io/@zCUv2P2UQHGmAOJFPLL_-A/rkFxGlhR-l |
| ✅ Notion | 公開済 | https://www.notion.so/Paper-145-v0-3-First-D-FUMT-8-Silicon-with-SELF-reflexive-Logic-Primitive-Three-Substrate-Cross-V-35add371e6d98159b740c3641d33b5f9 |
| ✅ Livedoor Blog | 公開済 | https://fcwebfujimoto.livedoor.blog/archives/13096910.html |
| ✅ Mastodon | 公開済 | https://mathstodon.xyz/@Fujimoto/116541557630370638 |
| ✅ Scrapbox | 公開済 | https://scrapbox.io/rei-aios/Paper%20145%20...%20Lean%204%20Refinement%20Proof |
| ✅ Nostr (NIP-23 long-form, decentralized) | 公開済 (3 relays) | https://njump.me/naddr1qvzqqqr4gupzq70yz2dpygdcr85r64z6gqupdn8zd2mzgjrpthdlvf628tjar6rlqy28wumn8ghj7un9d3shjtnyv9kh2uewd9hsz9nhwden5te0wfjkccte9ehx7um5wghxyctwvsqs6amnwvaz7tmwdaejumr0dsqpyun9dykkz6t0wvkhqctsv4ez6vf5x5zmrxar |

### Skipped (政策的 / 適用外)
| Platform | 理由 |
|---|---|
| Harvard Dataverse | opt-in only (`feedback_harvard_dataverse_opt_in.md`) — `HARVARD_PUBLISH=1` で trigger 可能 |
| PhilArchive | philosophy paper のみ — Paper 145 は hardware/quantum で適用外 (`feedback_publish_channels_11.md` 12ch 例外) |
| Akord (decentralized) | `--init-vault` 必要、 別 session で setup |
| Noary | dashboard 経由の手動 TX ID paste 必要 (人間 interaction) |

→ **計 11 site (うち 3 + 8 = 11 active publish) + 4 skip = total 15 channels**, **active 11/11 達成 (Harvard 抜きの実 11 platform 全網羅)**.

Zenodo Deposit ID: 20091185
IA item ID: rei-aios-paper-145-v03-1778282272143
Dev.to ID: 3636772
HackMD shortId: rkFxGlhR-l
Notion page ID: 35add371-e6d9-8159-b740-c3641d33b5f9
Mastodon ID: 116541557630370638
Nostr long-form ID: c90857877c44acf567703c3f9aef31f52e38e58c70635b8f0e83b88e53bdb8f8 (3/3 relays OK)
Nostr announce ID: 258e98e04f8e6117c480f48c85fd3e35e423585b37db5ed4486276c47b3373b2 (3/3 relays OK)

## paper の core 主張 (v0.3 controllable claim)

> "To our knowledge, this is the first demonstration of a fixed 8-valued discrete
> logic primitive (D-FUMT₈) including a SELF⟲ self-reflexive operation, implemented
> as native unitaries on real superconducting qubit hardware (IBM Heron r2) via
> 3-qubit basis encoding, complemented by FPGA dual-substrate (Tang Console NEO
> and Tang Nano 9K target synthesis via open-source toolchain — toolchain-portability evidence, NOT physically programmed per v0.5 corrigendum) and Lean 4 refinement proofs."

## 三者比較 evidence (paper 145 v0.3)

| leg | 内容 | 結果 | 永久 record |
|---|---|---|---|
| 1 Verilog FPGA | Tang Nano 9K **OSS toolchain synthesis output 37 LUT4** (not physical) + **Tang Console 138K physical silicon (the load-bearing target)** | ✅ Tang Console 138K User Code 0x000084BA + 0x00005C27 | git commit `8874e754` + `69abe84a` |
| 2 Aer simulator | Phase 1-5 cumulative | ✅ 231/231 entries, fidelity 1.000 | scripts/quantum/dfumt8_unitary_phase{1-5}.py |
| 3 IBM Heron r2 | Phase 1+2 cumulative | ✅ 96/96 (100%), avg fidelity 0.953 | jobs `d7v6d9jack5s73bf1re0` + `d7v6kcvmrars73d7qqqg` |

## 永久原則 keep 記録

- ✅ `feedback_world_uniqueness_claim_controllable.md` — 「世界初」 narrative 不使用、 5 controllable claims で置換
- ✅ `feedback_publish_channels_11.md` — 11-platform 標準 (Zenodo + IA = 2 完了; arXiv/Preprints/SSRN/HAL/viXra/ResearchGate/PhilArchive 等は別途追加可能)
- ✅ `feedback_harvard_dataverse_opt_in.md` — Harvard skip (default)
- ✅ `feedback_paper_required_links.md` — rei-aios.pages.dev + note.com/nifty_godwit2635 含有確認済
- ✅ `feedback_paper_four_element_structure.md` — 11-Part 構造 (Required + Conditional + Optional)
- ✅ `feedback_oss_for_rei_evolution.md` — PAL2v / Aerts / qudit prior art audit 済
- ✅ `project_chat_claude_quantum_review_2026-05-08.md` audit 必須項目 list — 3 項目全て完了

## Paper 145 v0.3 構造

- **Honest framing** (3 differentiator: D1 8-tuple semantic / D2 SELF⟲ / D3 cross-verification)
- **Abstract** (English + Japanese, three-substrate evidence 含む)
- **Part A: Required**: F1-F7 findings + Proofs table (12 行) + Honest positioning
- **Part B: Conditional**: B.5 Background + B.6 Methodology + B.7 Empirical Scope + **★ B.8 Three-Substrate Cross-Verification (NEW v0.3) ★** + **★ B.9 Related Work / Prior Art Audit (NEW v0.3) ★**
- **Part C: Optional**: C.8 Why matters + C.9 Future + C.10 Risks (R.1-R.7) + C.11 Acknowledgments + C.12 Three-party authorship
- **Appendix A** Lean 4 proof + **Appendix B** Verilog ALU + **Appendix C** Tang Console NEO pin map
- **Version history** v0.1 → v0.2 → **v0.3 (本 publish)**

## 11 mandatory citations (publish 時 §B.9 内)

### qudit prior art (priority high)
1. **Shi, Sinanan-Singh, Burke, Chiaverini, Chuang** (MIT 2026) — arxiv:2506.09371 — d=8 trapped-ion Grover
2. **Ringbauer et al.** (Innsbruck 2022) — Nat. Phys. s41567-022-01658-0 — d=7 universal qudit
3. **Brock et al.** (Yale 2025) — Nature s41586-025-08899-y — ququart error correction
4. **Goss et al.** (Berkeley 2022) — Nat. Commun. s41467-022-34851-z — qutrit entangling
5. **Goss et al.** (Berkeley 2024) — npj QI s41534-024-00892-z — qutrit processor extension

### paraconsistent silicon prior art
6. **Da Silva Filho** (UNISANTA 1998-) — Emmy robot
7. **Abe & Nakamatsu** (2009) — PAL2v naming
8. **de Carvalho Jr. et al.** (IFSP 2025) — arxiv:2511.20700

### paraconsistent quantum / cognitive logic
9. **Aerts** (VUB CLEA 1986-) — Hidden Measurement Formalism
10. **Aerts & Sassoli de Bianchi** (2017) — Quantum Cognition Beyond Hilbert Space
11. **Aerts** (2024) — Conceptuality Interpretation II

## How to apply (将来 session)

1. **Paper 145 引用必要時**: DOI `10.5281/zenodo.20091185` を使用
2. **Paper 145 v0.4 計画**: Lean 4 binary lattice (64-entry) full + IBM Phase 3-5 (残 budget ~8.5 min) + Dynamic Decoupling fidelity ≥0.99
3. **追加 platform publish**: arXiv (要 endorser, 別 session) / Preprints.org / SSRN / HAL / viXra / ResearchGate (auto-submit-paper11.ts 系列利用可能)
4. **Jxiv 投稿**: `feedback_jxiv_review_pending_check.md` 確認後 (前回 paper 審査 status verify)

## 関連 memory

- `project_paper145_prior_art_audit_2026-05-09.md` — audit 詳細 + controllable claims 5 種
- `project_phase_z_ibm_heron_real_hardware_success.md` — leg 3 evidence
- `project_phase_c_step3_dfumt8_alu_silicon_success.md` — leg 2 evidence
- `project_quantum_phase1_complete_2026-05-08.md` — leg 1 evidence (initial)
- `feedback_phase_c_silicon_existence_claim.md` ★★★★★ — 二段階主張 (本日完成)
- `feedback_world_uniqueness_claim_controllable.md` ★★★★ — 「世界初」 不使用
- `feedback_publish_channels_11.md` — 11 platform 標準
- `feedback_harvard_dataverse_opt_in.md` — Harvard skip default
- `feedback_no_rush_publication.md` — 急がず ゆっくりと (Paper 145 は 8 日 draft → v0.3 publish, 急ぎではない判断)
