{ "kernel": "run_sabrina_near_extremal_radial_pushforward", "role": "post-computation assertion only", "schema": "ouroboros_scientific_reference_assertion_v1", "scientific_payload": { "claim_boundary": { "arbitrary_mass_kinematics_claimed": false, "capabilities_removed": [], "convergence_claimed": false, "delta_support_kinematics_only": true, "epsilon_strictly_positive": true, "full_amplitude_evaluated": false, "mass_family_2_one_plus_epsilon_m_m_m_only": true }, "exact_checks": { "archive_hash_matches": true, "delta_support_present": true, "derivative_is_increasing": true, "endpoint_inverse_exact": true, "endpoint_product_exact": true, "endpoint_width_exact": true, "exact_radius_present": true, "full_amplitude_context_present": true, "inverse_sample_compositions_exact": true, "jacobian_exact": true, "jacobian_positive": true, "median_and_geometric_mean_exact": true, "member_hash_matches": true, "minimum_derivative_exact": true, "minimum_derivative_positive": true, "near_extremal_limit_present": true, "pushforward_normalization_exact": true, "quadratic_witness_exact": true, "source_block_matches": true, "support_quadratic_exact": true }, "paper": { "arxiv_id": "1701.00049", "title": "Flat Space Amplitudes and Conformal Symmetry of the Celestial Sphere" }, "pushforward_certificate": { "checks": { "endpoint_inverse_exact": true, "inverse_sample_compositions_exact": true, "jacobian_exact": true, "jacobian_positive": true, "pushforward_normalization_exact": true, "quadratic_witness_exact": true }, "exact_sample_count": 20, "inverse_map": "(-2*epsilon + rho**2)/(2*epsilon*rho)", "pushforward_density": "(2*epsilon + rho**2)/(2*epsilon*rho**2)", "second_moment": "4*epsilon*(epsilon + 3)/3", "total_measure": "2" }, "result_version": "sabrina_near_extremal_radial_pushforward_v1", "source_evidence": { "archive_sha256": "7553fb8bd01cf4423c26ec5da779dcc70589a21c5c3ee63e95ba43ac08460aa4", "block_sha256": "325d049c1635e32ee6c00a22bcc5228172913da086678dcd026678204efd9fa4", "checks": { "archive_hash_matches": true, "delta_support_present": true, "exact_radius_present": true, "full_amplitude_context_present": true, "member_hash_matches": true, "near_extremal_limit_present": true, "source_block_matches": true }, "member_sha256": "23a588d9aaade9d5f0868c951a1c98f766732e8e2238cf20cd201a741c9c5fb2", "source_lines": "303-360" }, "status": "complete", "support_map_certificate": { "checks": { "derivative_is_increasing": true, "endpoint_product_exact": true, "endpoint_width_exact": true, "median_and_geometric_mean_exact": true, "minimum_derivative_exact": true, "minimum_derivative_positive": true, "support_quadratic_exact": true }, "derivative": "c*epsilon**(3/2)/sqrt(c**2*epsilon + 2) + epsilon", "derivative_minimum": "epsilon*(-sqrt(epsilon)/sqrt(epsilon + 2) + 1)", "lower_endpoint": "sqrt(epsilon)*sqrt(epsilon + 2) - epsilon", "rho_of_c": "c*epsilon + sqrt(epsilon)*sqrt(c**2*epsilon + 2)", "upper_endpoint": "sqrt(epsilon)*sqrt(epsilon + 2) + epsilon" }, "theorem": { "endpoint_invariants": "width=2 epsilon, product=2 epsilon, median=sqrt(2 epsilon)", "inverse": "c=(rho^2-2 epsilon)/(2 epsilon rho)", "pushforward": "dc=(rho^2+2 epsilon)/(2 epsilon rho^2) drho", "radial_support": "rho in [sqrt(epsilon(2+epsilon))-epsilon, sqrt(epsilon(2+epsilon))+epsilon]" } }, "scientific_payload_sha256": "2e51bc35b918b5683ba9f4c83c8ff6e0488713eb143c0d120e66640262410e4e" }