Interactive simulator demonstrates quantum state collapse behaviors using resonance theory, suggesting new experimental predictions.
RET Lab is an interactive browser-based simulator accompanying the theoretical paper "Resonant Emergence Theory (RET): A TM–BM Information-Theoretic Framework for Quantum State Collapse and the Measurement Problem" (Khan, 2026).The simulator allows real-time exploration of the RET collapse condition Γ_RET = R(TM, BM_env) × S(ρ_env) ≥ θ_c, where Bold Memory (BM) is operationalised as von Neumann entropy S(ρ_env) and Resonance (R) as quantum fidelity F(ρ_TM, ρ_env). Users can adjust five parameters (BM entropy, quantum fidelity, collapse threshold, coupling strength, thermal occupancy) and observe real-time coherence decay curves, BM and fidelity sweeps, and a novelty comparison against the standard decoherence rate Γ_std = γ(2n_th + 1).The Novelty Test tab directly addresses the critical question raised by peer reviewers: whether RET merely renames standard decoherence theory or makes genuinely distinguishing predictions. The simulator demonstrates that when coupling γ varies at fixed entropy S, the standard rate changes proportionally while the RET rate remains constant — an experimentally distinguishable prediction testable via cavity QED with tunable coupling and fixed-entropy bath.Built in pure HTML/JavaScript. No installation, no API key, no internet required. Runs offline on any device including mobile.Author: Alim ul Haq KhanAffiliation: Independent Researcher, AURA-X Ω Research Cell, Timergara, Khyber Pakhtunkhwa, PakistanORCID: 0009-0001-4708-0365Website: alimai.online
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Alim ul haq Khan (2026) studied this question.
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