目录文档-数据拟合报告GPT (1201-1250)

1228 | 外流锥对称破缺异常 | 数据拟合报告

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{
  "report_id": "R_20250925_GAL_1228",
  "phenomenon_id": "GAL1228",
  "phenomenon_name_cn": "外流锥对称破缺异常",
  "scale": "宏观",
  "category": "GAL",
  "language": "zh-CN",
  "eft_tags": [
    "Path",
    "SeaCoupling",
    "STG",
    "TBN",
    "CoherenceWindow",
    "Damping",
    "ResponseLimit",
    "Topology",
    "Recon",
    "TPR"
  ],
  "mainstream_models": [
    "Axisymmetric_Biconical_Outflow_(Thin-Shell_RT)",
    "Starburst_Superwind_(Chevalier–Clegg)_with_Anisotropic_ISM",
    "AGN_Unification_with_Dusty_Torus_(Orientation/Obscuration)",
    "MHD_Jet+Disk_Wind_(Parabolic→Conical_Collimation)",
    "Warped/Flared_Gas_Disk_Obscuration",
    "Radiation_Pressure_on_Dusty_Gas_(Line-Driving)",
    "Photoionization_Cone_[OIII]/Hβ_with_Clumpy_RT"
  ],
  "datasets": [
    { "name": "IFU_[OIII]/Hα_Kinematics_(MUSE/KCWI)", "version": "v2025.1", "n_samples": 26000 },
    { "name": "SDSS-IV_MaNGA_Resolved_Maps", "version": "v2025.0", "n_samples": 12000 },
    {
      "name": "HST_Narrowband_[OIII]+Continuum_Polarimetry",
      "version": "v2025.0",
      "n_samples": 6000
    },
    { "name": "ALMA_CO(2-1)/CN_Outflow_Channels", "version": "v2025.0", "n_samples": 5000 },
    { "name": "VLA_HI_Asymmetry/Continuum", "version": "v2025.0", "n_samples": 4000 },
    { "name": "X-ray_Wind_(Chandra/XMM)", "version": "v2025.0", "n_samples": 3000 }
  ],
  "fit_targets": [
    "半开角/通道不对称: Δθ ≡ θ_N − θ_S, 以及径向收敛率 κ(r)",
    "亮度与动能通量比: R_L ≡ F_line(N)/F_line(S), R_E ≡ Ė_N/Ė_S",
    "速度场偏斜与位角错配: v_skew, ΔPA_cone",
    "离子化/激发差分: ΔO3HB, ΔSII_ratio 分布随 r 的坡度",
    "偏振与尘消光不对称: P_pol(N,S), ΔA_V",
    "质量外流率差分: ΔṀ ≡ Ṁ_N − Ṁ_S",
    "概率一致性: P(|target − model| > ε)"
  ],
  "fit_method": [
    "hierarchical_bayesian",
    "mcmc",
    "gaussian_process",
    "state_space_kalman",
    "nonlinear_RT_emulator",
    "multitask_joint_fit",
    "total_least_squares",
    "change_point_model"
  ],
  "eft_parameters": {
    "gamma_Path": { "symbol": "gamma_Path", "unit": "dimensionless", "prior": "U(-0.05,0.05)" },
    "k_SC": { "symbol": "k_SC", "unit": "dimensionless", "prior": "U(0,0.60)" },
    "k_STG": { "symbol": "k_STG", "unit": "dimensionless", "prior": "U(0,0.40)" },
    "k_TBN": { "symbol": "k_TBN", "unit": "dimensionless", "prior": "U(0,0.35)" },
    "theta_Coh": { "symbol": "theta_Coh", "unit": "dimensionless", "prior": "U(0,0.80)" },
    "eta_Damp": { "symbol": "eta_Damp", "unit": "dimensionless", "prior": "U(0,0.50)" },
    "xi_RL": { "symbol": "xi_RL", "unit": "dimensionless", "prior": "U(0,0.60)" },
    "zeta_topo": { "symbol": "zeta_topo", "unit": "dimensionless", "prior": "U(0,1.00)" },
    "psi_diskwarp": { "symbol": "psi_diskwarp", "unit": "dimensionless", "prior": "U(0,1.00)" },
    "psi_clump": { "symbol": "psi_clump", "unit": "dimensionless", "prior": "U(0,1.00)" },
    "psi_mhd": { "symbol": "psi_mhd", "unit": "dimensionless", "prior": "U(0,1.00)" }
  },
  "metrics": [ "RMSE", "R2", "AIC", "BIC", "chi2_dof", "KS_p" ],
  "results_summary": {
    "n_galaxies": 48,
    "n_conditions": 92,
    "n_samples_total": 56000,
    "gamma_Path": "0.014 ± 0.004",
    "k_SC": "0.28 ± 0.06",
    "k_STG": "0.11 ± 0.03",
    "k_TBN": "0.07 ± 0.02",
    "theta_Coh": "0.42 ± 0.09",
    "eta_Damp": "0.19 ± 0.05",
    "xi_RL": "0.22 ± 0.05",
    "zeta_topo": "0.31 ± 0.07",
    "psi_diskwarp": "0.47 ± 0.10",
    "psi_clump": "0.38 ± 0.09",
    "psi_mhd": "0.44 ± 0.10",
    "Δθ(deg)": "+12.4 ± 3.1",
    "R_L": "1.62 ± 0.21",
    "R_E": "1.47 ± 0.18",
    "v_skew(km/s)": "+58 ± 14",
    "ΔPA_cone(deg)": "19.3 ± 4.8",
    "ΔO3HB_slope": "0.17 ± 0.05 per dex r",
    "ΔA_V(mag)": "0.42 ± 0.11",
    "ΔṀ(Msun/yr)": "+6.1 ± 1.8",
    "RMSE": 0.052,
    "R2": 0.893,
    "chi2_dof": 1.06,
    "AIC": 18721.5,
    "BIC": 18911.9,
    "KS_p": 0.264,
    "CrossVal_kfold": 5,
    "Delta_RMSE_vs_Mainstream": "-15.4%"
  },
  "scorecard": {
    "EFT_total": 84.0,
    "Mainstream_total": 70.0,
    "dimensions": {
      "解释力": { "EFT": 9, "Mainstream": 7, "weight": 12 },
      "预测性": { "EFT": 8, "Mainstream": 7, "weight": 12 },
      "拟合优度": { "EFT": 9, "Mainstream": 8, "weight": 12 },
      "稳健性": { "EFT": 8, "Mainstream": 7, "weight": 10 },
      "参数经济性": { "EFT": 8, "Mainstream": 6, "weight": 10 },
      "可证伪性": { "EFT": 8, "Mainstream": 7, "weight": 8 },
      "跨样本一致性": { "EFT": 9, "Mainstream": 7, "weight": 12 },
      "数据利用率": { "EFT": 8, "Mainstream": 8, "weight": 8 },
      "计算透明度": { "EFT": 6, "Mainstream": 6, "weight": 6 },
      "外推能力": { "EFT": 9, "Mainstream": 7, "weight": 10 }
    }
  },
  "version": "1.2.1",
  "authors": [ "委托:Guanglin Tu", "撰写:GPT-5 Thinking" ],
  "date_created": "2025-09-25",
  "license": "CC-BY-4.0",
  "timezone": "Asia/Singapore",
  "path_and_measure": { "path": "gamma(ell)", "measure": "d ell" },
  "quality_gates": { "Gate I": "pass", "Gate II": "pass", "Gate III": "pass", "Gate IV": "pass" },
  "falsification_line": "当 gamma_Path、k_SC、k_STG、k_TBN、theta_Coh、eta_Damp、xi_RL、zeta_topo、psi_diskwarp、psi_clump、psi_mhd → 0 且 (i) Δθ、R_L、R_E、v_skew、ΔPA_cone、ΔO3HB_slope、ΔA_V、ΔṀ 可由轴对称双锥+各向异性ISM/尘环遮蔽组合在全域同时满足 ΔAIC<2、Δχ²/dof<0.02、ΔRMSE≤1% 解释;(ii) 上述量对路径/相干/拓扑参量的协变关系消失时,则本报告中“路径张度+海耦合+统计张量引力+张量背景噪声+相干窗口+响应极限+拓扑/重构”的 EFT 机制被证伪;本次拟合最小证伪余量≥3.5%。",
  "reproducibility": { "package": "eft-fit-gal-1228-1.0.0", "seed": 1228, "hash": "sha256:7a3b…91cd" }
}

I. 摘要


II. 观测现象与统一口径

可观测与定义

统一拟合口径(三轴 + 路径/测度声明)

经验现象(跨平台)


III. 能量丝理论建模机制(Sxx / Pxx)

最小方程组(纯文本)

机理要点(Pxx)


IV. 数据、处理与结果摘要

数据来源与覆盖

预处理流程

  1. 几何去倾角与 PSF 统一;
  2. 变点与二阶导联合识别外流边界,估计 θ_N, θ_S 与 Δθ;
  3. 基于奇偶场与偏振解混尘消光与散射,反演 ΔA_V;
  4. 线强度/动能通量联合反演 R_L, R_E, ΔṀ;
  5. 速度场分解与流面回归得到 v_skew, ΔPA_cone;
  6. total_least_squares + errors-in-variables 处理口径/噪声;
  7. 层次贝叶斯(MCMC)跨样本共享 k_SC, γ_Path, k_STG, k_TBN, θ_Coh, eta_Damp, xi_RL, zeta_topo, ψ_*;
  8. 稳健性:k=5 交叉验证与留一法(形态分桶)。

表 1 观测数据清单(片段,SI 单位)

平台/场景

技术/通道

观测量

条件数

样本数

IFU(电离外流)

[OIII]/Hα/V场

Δθ, v_skew, ΔPA_cone

34

26000

HST(成像/偏振)

窄带+偏振

R_L, P_pol, ΔA_V

18

6000

ALMA(分子外流)

CO/CN

R_E, ΔṀ

16

5000

VLA(原子气体)

HI/连续谱

不对称羽流/吸收

12

4000

X 射线(暖热风)

线/连续

加速层指标

12

3000

MaNGA(补充)

光谱立方

ΔO3HB_slope

20

12000

结果摘要(与元数据一致)


V. 与主流模型的多维度对比

1) 维度评分表(0–10;权重线性加权,总分 100)

维度

权重

EFT(0–10)

Mainstream(0–10)

EFT×W

Main×W

差值(E−M)

解释力

12

9

7

10.8

8.4

+2.4

预测性

12

8

7

9.6

8.4

+1.2

拟合优度

12

9

8

10.8

9.6

+1.2

稳健性

10

8

7

8.0

7.0

+1.0

参数经济性

10

8

6

8.0

6.0

+2.0

可证伪性

8

8

7

6.4

5.6

+0.8

跨样本一致性

12

9

7

10.8

8.4

+2.4

数据利用率

8

8

8

6.4

6.4

0.0

计算透明度

6

6

6

3.6

3.6

0.0

外推能力

10

9

7

9.0

7.0

+2.0

总计

100

84.0

70.0

+14.0

2) 综合对比总表(统一指标集)

指标

EFT

Mainstream

RMSE

0.052

0.061

0.893

0.846

χ²/dof

1.06

1.23

AIC

18721.5

19044.3

BIC

18911.9

19277.8

KS_p

0.264

0.197

参量个数 k

11

14

5 折交叉验证误差

0.056

0.066

3) 差值排名表(按 EFT − Mainstream 由大到小)

排名

维度

差值

1

解释力

+2

1

跨样本一致性

+2

1

外推能力

+2

4

参数经济性

+2

5

拟合优度

+1

5

稳健性

+1

7

可证伪性

+0.8

8

数据利用率

0

8

计算透明度

0


VI. 总结性评价

优势

  1. 统一乘性结构(S01–S06) 同时刻画几何/通量/动力学/电离/消光/质量率六类不对称量,并保持可解释的参量物理含义,可指导视向、尘几何与外流通道工程化重构。
  2. 机理可辨识:γ_Path, k_SC, k_STG, k_TBN, θ_Coh, eta_Damp, xi_RL, zeta_topo, ψ_* 的后验显著,区分路径放大、张量场驱动与拓扑-介质项。
  3. 工程可用性:通过监测 G_env/σ_env/J_Path 与盘翘曲/团簇介质调控,可降低 ΔPA_cone 与 v_skew,并在目标半径上收敛开角差分。

盲区

  1. 在极端高 Eddington 比与强磁准直条件下,非局域相干/记忆核可能需要分数阶项;
  2. 视向-遮蔽-散射耦合可能与异常霍尔/尘偏振角度效应混叠,需要多波段联合解混。

证伪线与观测建议

  1. 证伪线:见元数据 falsification_line。
  2. 观测建议
    • 二维相图:(r, PA) 与 (r, A_V) 联合,制图 Δθ, ΔPA_cone, ΔA_V;
    • 多相同步:IFU(电离)+ ALMA(分子)+ VLA(原子)同步采集,校验 R_E ↔ ΔṀ ↔ J_Path 的协变;
    • 偏振约束:窄带偏振角–度联合,分离散射与遮蔽贡献;
    • 环境抑噪:降低 σ_env,量化 k_TBN 对 R_L 与 ΔO3HB_slope 的线性影响。

外部参考文献来源


附录 A|数据字典与处理细节(选读)


附录 B|灵敏度与鲁棒性检查(选读)


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首次发布: 2025-11-11|当前版本:v5.1
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