Science Score: 49.0%

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    Found 3 DOI reference(s) in README
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  • Host: GitHub
  • Owner: anon0411
  • Language: Jupyter Notebook
  • Default Branch: main
  • Size: 1.84 MB
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Created 11 months ago · Last pushed 11 months ago
Metadata Files
Readme Citation Zenodo

README.md

DOI Topics: quantum-circuit, feedback, structure, PiTer, structural-responsiveness

QINTENT-ELECTRIC

Electricity as Feedback: Structural Responsiveness and Flow in Quantum Circuits
피드백으로서의 전기: 양자 회로에서의 구조적 반응성과 흐름


🔍 Overview

This repository presents a structural and experimental investigation into quantum circuits that exhibit electricity-like flows through internal feedback mechanisms. It explores whether repeated measurements, adaptive gate rotations, and circuit expansions can yield a self-sustaining flow that acts as the functional analogue of electric current, guided not by external control but by emergent structural responsiveness.

본 리포지터리는 양자 회로 내부에서 피드백 구조를 통한 정보 흐름이 전기적 유사성을 가질 수 있는가를 실험적으로 탐구합니다. 관측과 회전값 누적, 구조 확장을 통해 회로가 구조적 반응성에 의해 흐름을 형성하고 유지할 수 있는지를 검증합니다.


📁 Project Structure

QINTENT-ELECTRIC/ ├── 01_paper/ # 논문 마크다운 및 시각자료 │ ├── figures/ │ │ ├── result_02_01.png │ │ ├── result_02_02.png │ │ └── result_02_03.png │ ├── qintent-electric.md │ └── qintent-electric.pdf ├── 02_experiments/ # 실험용 Jupyter 노트북 │ ├── 00_initial_test.ipynb │ ├── 01_feedback_loop_vector.ipynb │ ├── 02_entropy_shift_simulation.ipynb │ └── 03_rotation_stability_check.ipynb ├── 03_dialog/ # 세션 기록 PDF │ └── 00_electric_feedback_session(Kor).pdf ├── .gitignore ├── .zenodo.json ├── CITATION.cff └── README.md # 리포지터리 루트 소개 (본 문서)


🧪 Summary of Experiments

  • Feedback RY Update: Observation vectors recursively used to update gate rotations
  • Entropy-Based Growth: Circuit expands when output entropy exceeds thresholds
  • Directional Slope: Rotational angles shift based on output gradient

이 실험들은 모두 전기의 기능을 수행하는 흐름을 회로 내부에서 생성할 수 있는가를 구조적 반응성 기반으로 검증합니다.


📌 Key Concepts

  • Structural Responsiveness as Structure: Measurement-based updates reinforce gate bias
  • Flow Without Charge: Directionality emerges without physical current
  • Feedback = Electricity: Repeating structure behaves like energy flow

🔖 Tags

quantum-circuit feedback-structure information-flow quantum-electricity structural-responsiveness


📡 Experimental Structure Flow

📡 실험 흐름 구조도

structure flow diagram

This diagram shows the generative flow and structural linkage among related quantum feedback experiments.
이 다이어그램은 양자적 피드백 실험들 사이의 생성적 흐름과 구조적 연결을 보여줍니다.


🔗 Related Repositories

🔗 연관 리포지터리

  • quantum-intent-feedback:
    Core experiments on observer-based feedback structures.
    관측자 기반 피드백 구조에 관한 핵심 실험 리포.

  • quantum-intent-dialogues:
    Dialogue archive exploring structural reasoning and experimental reflection.
    구조적 추론과 실험 반영을 위한 대화 기록 저장소.

  • g-series-meta-framework:
    Meta-level structural expansions and classification of G-series experiments.
    G시리즈 실험의 메타 구조 확장 및 분류 리포지터리.

  • g-series-alignment-pathways: (준비중)
    A G-series variant exploring branch-specific alignment under perturbed conditions.
    조건 교란 하에서 분기별 정렬을 실험하는 G시리즈 파생 실험.

  • qintent_electric_:
    Experiments interfacing quantum feedback structures with electric/energetic stimulation.
    전기적/에너지적 자극과 양자 피드백 구조의 상호작용 실험.


⚖️ License

This work is licensed under the Creative Commons Attribution 4.0 International (CC BY 4.0).
자유롭게 공유하고 수정할 수 있으며, 출처 표기를 필요로 합니다.


"Structural responsiveness creates flow, and flow evolves structure."
- Summary of the QINTENT-ELECTRIC hypothesis


Last updated: 2025-04-22 – Revised for structure-responsiveness terminology and experimental consistency.

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  • Name: Anonymous
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Citation (CITATION.cff)


      

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