The Physics of Consciousness
Pudding Theory.
A framework for understanding how consciousness shapes the soft simulation of reality through quantum fields. How the internal state becomes external events.
"If you think it, you create it."
Topological Information Fields
The unification of quantum mechanics, general relativity, and consciousness remains a central challenge in modern science. We present Pudding Theory, a Topological Theory of Information Fields. We postulate that the quantum vacuum acts as a stochastic reservoir susceptible to information pressure. We introduce a "Hidden Sector" complex scalar field, ฮ (Integrated Information), which possesses topological boundary conditions. This field couples to the Standard Model via a massive gauge boson, Lumina ($A_\mu$), through Stochastic Resonance with zero-point fluctuations. We construct a gauge-invariant action and demonstrate how weak informational signals (~ 20W) can bias macroscopic probability distributions by modulating the noise threshold of chaotic systems. The aim is straightforward: to provide a rigorous mathematical basis for observer-dependent reality rendering.
The Ten Principles
The Hero's Override
Reality yields to the strongest intent. Some observers passively accept the world as given. Others generate enough force to bend it. Your density of consciousness determines which one you are.
Matter Remembers
Objects store intent. Everything you touch absorbs a trace of your consciousness, acting as a battery. This is why heirlooms feel heavy and new things feel empty.
The Vacuum Listens
Empty space isn't empty-it's waiting. The quantum vacuum is a sea of potential that responds to your input. Reality is ready for your instructions.
Chaos Yields First
Unstable systems bend easiest. Crowds, weather, dice, coincidences-these respond to intent immediately. Push where the world is already fluid.
You Are The Field
You're not a point-you're a region of consciousness. Your beliefs set the boundary conditions for what can happen to you. Change the beliefs, change the boundaries.
Intent Creates Order
Your focused desire generates Lumina-a force that organizes randomness into meaning. Strong emotion amplifies the effect. This is why passion bends reality.
Solidity Is Temporary
Walls are only hard right now. Given enough time and persistent intent, every barrier softens. What's impossible today becomes inevitable tomorrow.
Distance Matters
Your strongest effects happen closest to you. Your "vibe cloud" is thickest within arm's reach and fades with distance. Proximity is power.
The Future Leaks Back
Time isn't a one-way street. Your intent now can influence events that already happened but haven't been observed yet. The future and past talk to each other.
Coherence Multiplies
When groups align on one target, the effect isn't additive-it's exponential. Ten people focused together aren't 10x stronger. They're 100x stronger.
The Mechanics
VIBE CLOUD
Local Interaction Volume
Feel someone staring? Know who's calling? Sense a room's mood? That's your vibe cloud-where you experience being alive. It's your personal reality engine.
Your vibe cloud is the stream of experience arriving right now. It's strongest near you, but it brushes the pudding at a distance. Our vibe clouds overlap and interact.
Physics:
The Vibe Cloud corresponds to the local interaction volume of the consciousness field $\Xi$ and the Zero-Point Field. Within this region (~1 meter), your intent couples to vacuum fluctuations, enabling probability bias. Effect magnitude decays exponentially with distance.
Try it (60s):
- Widen: Notice the farthest thing you can see.
- Layer: Add sound. Feel the cloud amplify.
- Overlap: Think of someone. Feel the probability interaction.
PRIORS
Boundary Conditions
That thing that always happens to you? Your beliefs and expectations are probability weights tilting reality's dice. They're not just thoughts-every expectation you hold tilts the probability before the dice roll.
Your specific luck, good or bad, isn't random. It's your priors acting as configurations in probability space. Strongly-held beliefs resist change-they're topologically protected.
Physics:
Priors are the phase component $S(x)$ of the consciousness field $\Xi(x) = \sqrt{\Phi(x)}e^{iS(x)}$. Deep beliefs have high "winding numbers" that make them resistant to contrary evidence-like knots that can't be untied without cutting.
CONSCIOUSNESS
The Field That Shapes
Consciousness isn't made by your brain-it's a fundamental field like gravity. It pools and concentrates around complex patterns. Your brain is an antenna, not a generator.
Physical structures create patterns where this field concentrates. Your body is a complex pattern; rocks are simpler. But everything participates to some degree.
Physics:
Consciousness is modeled as the complex scalar field $\Xi(x)$ residing in a "Hidden Sector" that mixes weakly with ordinary matter. Its magnitude $|\Xi|^2$ corresponds to integrated information density-more complex systems concentrate more of the field.
LUMINA
Your Animating Force
Every emotion, every intention generates Lumina. It's the spark that makes you alive rather than just matter. Consciousness + Priors = Lumina ignites. This is why passionate people bend reality more.
Lumina arises from a symmetry: the conservation of information. Strong emotions generate more Lumina. The field gets its mass in regions of high complexity (brains), confining its range to about 1 meter.
Physics:
Lumina is the gauge boson ($A_{\mu}$) arising from the symmetry breaking of $\Xi$. It represents a negentropy current-a force that organizes randomness into order. Its finite mass confines effects to the local vicinity of the observer.
THE LOOP
Continuous Creation
Reality updates inside your vibe cloud as your attention and expectations meet the world. Lumina points the update; your priors weight what is likely to collapse.
PRIORS + CONSCIOUSNESS → LUMINA → REALITY UPDATE → VIBE CLOUD
Running billions of times per second
If you understand the loop, you can hack it. That's key to your work. Lumina doesn't inject energy-it selects which fluctuations get amplified.
The loop is governed by a Langevin Equation where your intent modulates the noise threshold of the vacuum. This allows low-energy brain activity to influence which random fluctuations cross the threshold into reality. Selection, not force.
OBJECTS
Collapsed Priors With Power
Objects contain frozen priors-probability patterns from everyone who's touched them. Some objects accumulate so much consciousness they become power objects. This is why certain things feel special.
Objects can become condensation points for consciousness. They're stable, so they hold patterns well. The Book of Houses is a power object because it contains the collapsed priors of manifestation itself.
Physics:
Objects act as localized wells of stability. They retain standing wave patterns of the Lumina field, storing informational imprints that resist decay. This explains why heirlooms, talismans, and "cursed" objects carry influence across time.
PUDDING STORMS
Focused Group Intent
When groups focus together, their vibe clouds synchronize. Concerts, protests, ceremonies-these are pudding storms. Collective consciousness warping reality at scale.
The key is coherence. Random crowds create chaos. Focused groups create miracles. Rituals are technologies for creating pudding storms. Ten aligned people aren't 10x stronger-they're 100x stronger.
Physics:
Group coherence creates high-amplitude standing waves in the Lumina field. When observers align their intent, effects multiply exponentially ($N^2$ scaling) rather than adding linearly ($N$ scaling). This is why coordinated group intention-prayer circles, meditation groups, focused crowds-reports dramatically stronger effects than individual practice.
TIME
Vibe Clouds Reach Across Time
Your vibe cloud reaches across time because your intent lives on spacetime's shape, not just in a single moment. When you focus, your priors warp forward-and backward-leaving a trace.
Shared focus can stitch moments together. A clear intention now can "prime the path" you meet later. The same can be said of going backwards-your observation now can influence what already happened but hasn't been seen yet.
Physics:
Pudding Theory operates within a Block Universe-past, present, and future coexist. Your intent now is part of the consistent history that includes earlier events. This isn't sending messages backward; it's selecting which history is real. Like choosing which path through a maze was "always" the right one.
EXPERIENCE
The Triple Intersection
Where does subjective experience actually happen? At the triple intersection of Consciousness, Spacetime, and Information-mediated by Lumina. You experience the update, but it can't be seen from outside.
The Experience Field is where the reality update is felt. External measurements can detect consciousness density, spacetime curvature, and statistical patterns-but they can't access what it's like to be you. That's yours alone.
Physics:
The Experience Field $\mathcal{V}(x)$ emerges only where all three domains overlap: consciousness is present, spacetime fluctuations exist, and informational structure is defined. This field is first-person observable but third-person inaccessible-formalizing the locus of subjective reality.
Pudding Theory applied to 99 arXiv source papers
Sterling Geisel-bylined working papers reviewed by Dr. Hideo Tanaka. Each paper applies one or more of the eight Postulates to a public arXiv source paper and outputs a falsifiable observable. Single-use license. Both human and agent buyers welcome.
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Vacuum Receptivity Forces CP-like Asymmetry into Paired Zero-Trace Channels After Symmetry Breaking
arXiv:2310.16710 ยท Vacuum Receptivity ยท $2.99
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Partial Linearization Constrains Adapter Task Vectors as Orthogonal Material Memory
arXiv:2310.04742 ยท Material Memory ยท $2.99
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Aharonov-Bohm Violet Noise Marks Vacuum Receptivity in Locally Non-Conserved Conductors
arXiv:2604.15913 ยท Vacuum Receptivity ยท $2.99
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Local Vacuum Energy Is Receptive Curvature, Not a Global Constant
arXiv:2601.07869 ยท Vacuum Receptivity ยท $2.99
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Material Memory Makes Scalar-Gravity Mass Centers Carry Their Internal Histories
arXiv:2604.15397 ยท Material Memory ยท $2.99
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The Spinodal Edge in Dark-QCD Metastability Is a Chaos-Susceptible Information Boundary
arXiv:2601.15342 ยท Chaos Susceptibility ยท $2.99
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Vacuum Receptivity Fixes the Oscillatory Dark-Energy Mode as a Coherence-Weighted Property of the Late-Time Vacuum
arXiv:2602.04887 ยท Vacuum Receptivity ยท $5.99
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Fermionic Anti-Self-Adjointness Is the Material Memory Channel of Spontaneous Localization
arXiv:2602.15044 ยท Material Memory ยท $5.99
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Mott Critical Geometry Amplifies Coherent Bias Through Chaos Susceptibility
arXiv:2604.12101 ยท Chaos Susceptibility ยท $5.99
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Metric Fusion Constrains Electroweak Gravity as an Observer Field Boundary
arXiv:2601.12668 ยท Observer As Field ยท $9.99
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Uniform Acceleration Fixes the Observer Field by Canceling Wigner Rotation Against Thomas Precession
arXiv:2601.12363 ยท Observer As Field ยท $5.99
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Vacuum Receptivity Fixes the Hubble Tension by Treating Scale History as a Physical Signal
arXiv:2602.04532 ยท Vacuum Receptivity ยท $2.99
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Vacuum Receptivity Fixes Ballistic Conductance as a Boundary-Limited Receiving Capacity
arXiv:2604.19828 ยท Vacuum Receptivity ยท $2.99
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A Global Monopole Shadow Is Spacetime Memory Written Into Null Geodesics
arXiv:2604.14213 ยท Material Memory ยท $2.99
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Vacuum Receptivity Structurally Constrains the Positive Decay Index in DESI DR2 ฮ(t) Cosmology
arXiv:2604.16564 ยท Vacuum Receptivity ยท $2.99
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HD 163296โs Background-Star Extinction Field Is a Material Memory of Disk History
arXiv:2603.18338 ยท Material Memory ยท $2.99
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Vacuum Receptivity Makes the Stieltjes Kernel a Coherence-Weighted Gravitational Reservoir
arXiv:2603.16026 ยท Vacuum Receptivity ยท $9.99
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Material Memory Constrains Lithopanspermia to Protected Martian Carriers
arXiv:2604.03916 ยท Material Memory ยท $9.99
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The Small-System Group Is the Thermodynamic Visibility of Vacuum Receptivity
arXiv:2604.12375 ยท Vacuum Receptivity ยท $9.99
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Boundary Closure Is Material Memory in Landauer Holography
arXiv:2604.08583 ยท Material Memory ยท $5.99
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Metric-Dependent Scalar Hair Is Vacuum Reception at a Schwarzschild Boundary
arXiv:2604.01246 ยท Vacuum Receptivity ยท $9.99
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Gravitational Redshift Is a Vacuum-Mode Update, Not a Photon-Trajectory Energy Loss
arXiv:2604.09662 ยท Vacuum Receptivity ยท $9.99
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Type Ia Supernovae Trace a Receptive Vacuum Constrained by Zero Active Mass
arXiv:2602.15047 ยท Vacuum Receptivity ยท $2.99
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Vacuum Receptivity Fixes the Branch Curvature in Spin-Nondegenerate SME Transport
arXiv:2604.03293 ยท Vacuum Receptivity ยท $5.99
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Vacuum Receptivity Fixes the Texon Kernel as a Received Information Spectrum
arXiv:2603.14200 ยท Vacuum Receptivity ยท $9.99
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Axial Euclidon Composition Shows Vacuum Receptivity as a Structural Constraint on Stationary N-Center Fields
arXiv:2603.10064 ยท Vacuum Receptivity ยท $5.99
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Vacuum Receptivity Fixes the Freeze-Out Imprint of a 20 GeV Gamma-Ray Excess
arXiv:2603.15205 ยท Vacuum Receptivity ยท $9.99
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Bounce Relics Preserve a Vacuum-Weighted Memory of Pre-Bounce Structure
arXiv:2602.17702 ยท Vacuum Receptivity ยท $2.99
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A Coherent Superconducting Junction Converts Vacuum Receptivity into Saturated Scalar Gravitational Source
arXiv:2603.26986 ยท Vacuum Receptivity ยท $5.99
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Venusian Rainbow Geometry Is an Observer-Field Caustic With Alexanderโs Band as Its Boundary
arXiv:2603.15629 ยท Observer As Field ยท $5.99
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Cauchy-Horizon Particle Collisions Scale With Surface-Gravity Susceptibility, Not Particle Fine Tuning
arXiv:2603.20245 ยท Chaos Susceptibility ยท $2.99
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Vacuum Receptivity Fixes the Coherence Kernel in Zero-Point-Field Superconductors
arXiv:2603.27053 ยท Vacuum Receptivity ยท $2.99
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Birefringent Tape Makes the Classroom Qubit a Material Memory System
arXiv:2604.00030 ยท Material Memory ยท $9.99
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Polygenic Equilibrium Stores Epistatic Selection as Allele-Frequency Memory
arXiv:2603.27255 ยท Material Memory ยท $2.99
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Vacuum Receptivity Fixes the Dirac-Oscillator Deformation to the Spectral Invariant
arXiv:2603.15632 ยท Vacuum Receptivity ยท $9.99
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Observer Gauge Fields Fix the Quantum-Gravitational Hamiltonian in Extended Phase Space
arXiv:2603.19243 ยท Observer As Field ยท $9.99
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Causal Relativity Is the Geometry of Extended Observer Fields
arXiv:2604.07014 ยท Observer As Field ยท $2.99
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Smart Hospital Convergence Is a Distributed Observer Field with Measurable Boundary Coherence
arXiv:2603.30004 ยท Observer As Field ยท $5.99
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Harmonic Brain Flows Are Material Memory Traces in Counterfactual Network Dynamics
arXiv:2603.29843 ยท Material Memory ยท $2.99
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Path Memory Drives Braess Trapping in Tandem-Running Ants
arXiv:2603.26226 ยท Material Memory ยท $9.99
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Observer Fields Are Measurable as Subject-Specific Higher-Order Brain Topologies
arXiv:2603.29903 ยท Observer As Field ยท $9.99
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STR Locus Rates Are Material Memory Imprints, Not Independent Clock Parameters
arXiv:2603.25628 ยท Material Memory ยท $5.99
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Modular Voter Consensus Is Governed by Chaos Susceptibility Along the Alignment Manifold
arXiv:2603.26822 ยท Chaos Susceptibility ยท $2.99
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Metric-Operator Fluctuations Are Vacuum Receptivity in Commutator Geometry
arXiv:2603.14533 ยท Vacuum Receptivity ยท $2.99
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Bee Ferromagnetism Is a Material Memory Substrate for Local Magnetic Orientation
arXiv:2603.20312 ยท Material Memory ยท $9.99
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Gain-Controlled Reservoirs Exhibit Chaos Susceptibility as a Structural Constraint on Computation
arXiv:2603.29597 ยท Chaos Susceptibility ยท $5.99
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Curvature Drift Is the Field-Frame Signature of Observer-Extended Alignment
arXiv:2604.15354 ยท Observer As Field ยท $5.99
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Coupled Plankton Layers Convert Environmental Noise into a Synchronized Turing Field
arXiv:2603.24000 ยท Chaos Susceptibility ยท $9.99
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Communication-Induced Bifurcation Is a Vacuum-Receptive Ordering Transition in Power Packet Networks
arXiv:2603.27446 ยท Vacuum Receptivity ยท $9.99
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Smooth Pursuit Outliers Are Field-Boundary Deviations in Autism Spectrum Disorder
arXiv:2603.22705 ยท Observer As Field ยท $5.99
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Trait-Space Diffusion Makes Epidemic Control a Susceptibility Problem
arXiv:2603.18801 ยท Chaos Susceptibility ยท $2.99
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Spatial Epidemics Lock Reproduction to Unity Through Chaos Susceptibility
arXiv:2603.22150 ยท Chaos Susceptibility ยท $9.99
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Chaotic Basin Geometry Determines Cooperative Escape in Collective-Risk Games
arXiv:2603.20706 ยท Chaos Susceptibility ยท $9.99
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Epidemic Peaks Are Coherence Thresholds in the Contact Field
arXiv:2603.22498 ยท Chaos Susceptibility ยท $9.99
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Weak Tit-for-Tat Dominates by Material Memory in Structured Donation Games
arXiv:2603.20998 ยท Material Memory ยท $5.99
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Positive Lyapunov Structure, Not Singular Irregularity, Defines the Pudding-Susceptible Planar System
arXiv:2603.29243 ยท Chaos Susceptibility ยท $5.99
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Intermediate Mutation Creates the Susceptible Evolutionary Channel for Actomyosin Convergence at Alpha-Star
arXiv:2603.17183 ยท Chaos Susceptibility ยท $9.99
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Type Y Heteroclinic Cycles Are Structural Amplifiers of Coherent Bias
arXiv:2603.30011 ยท Chaos Susceptibility ยท $9.99
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Nested LLM Agents Exhibit Signal Dominance Only Under Co-Scaling
arXiv:2603.23626 ยท Signal Dominance ยท $5.99
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Moderate Heterogeneity Orders Triadic Kuramoto Networks by Making Their Attractor Landscape More Susceptible
arXiv:2603.14950 ยท Chaos Susceptibility ยท $9.99
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Risk Perception Is the Susceptibility Field That Selects Vaccination States on Heterogeneous Networks
arXiv:2603.24403 ยท Chaos Susceptibility ยท $5.99
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Higher-Order Collapse in Simplicial Complexes Is the Release of Stored Material Memory
arXiv:2603.24286 ยท Material Memory ยท $5.99
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Pre-Collapse Saturation Determines the Post-Collapse Dresden Flow Field
arXiv:2603.19947 ยท Chaos Susceptibility ยท $9.99
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Microscopic Regularity Stores the Shot-Noise Time Scale in Finite Kuramoto Ensembles
arXiv:2603.28523 ยท Material Memory ยท $5.99
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Chaotic Nonequilibrium Response Is the Amplification Channel of Informational Bias
arXiv:2603.26275 ยท Chaos Susceptibility ยท $2.99
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Material Memory Constrains Watanabe-Strogatz Invariants as Conserved Phase Imprints
arXiv:2603.18809 ยท Material Memory ยท $9.99
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Separatrix Scrambling Is the Susceptibility Kernel of Chaos
arXiv:2603.26480 ยท Chaos Susceptibility ยท $5.99
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User Trust Forms a Measurable Field That Selects AI Safety Equilibria Through Monitoring Frequency
arXiv:2603.24742 ยท Observer As Field ยท $9.99
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Performance-Evolved Reservoirs Encode Wilson-Cowan Dynamics as Material Memory in Their Connectivity Sign Structure
arXiv:2603.13635 ยท Material Memory ยท $9.99
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Near-Critical Network Plasticity Amplifies Small Coherent Biases
arXiv:2603.25180 ยท Chaos Susceptibility ยท $9.99
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Scale-Free Metabolic Networks Should Amplify Weak Coherent Bias Under Nutrient Scarcity
arXiv:2603.19850 ยท Chaos Susceptibility ยท $2.99
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Infinite-Mean Fitness Produces Measurable Signal-Dominant Clustering Without Latent Geometry
arXiv:2603.13159 ยท Signal Dominance ยท $5.99
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Conservative Phase Oscillator Networks Amplify Small Coherent Biases Only in Positive-Lyapunov Regimes
arXiv:2603.25431 ยท Chaos Susceptibility ยท $2.99
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Masked Forecast Error Scales With Lyapunov Susceptibility in Irregular Spatiotemporal Fields
arXiv:2603.25597 ยท Chaos Susceptibility ยท $5.99
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Repeated Training Load Leaves a Measurable Bone-Damage Memory in Thoroughbred Metacarpal Subchondral Bone
arXiv:2603.22680 ยท Material Memory ยท $5.99
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Local Gauge Compatibility Should Show Enhanced Relaxation in Chaotic Transport Graphs
arXiv:2604.14190 ยท Chaos Susceptibility ยท $2.99
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Alpha-Band Construction Decoding Should Scale With Observer-Field Coherence Across Human Listeners
arXiv:2603.29617 ยท Observer As Field ยท $5.99
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Spatial Biodiversity Variance Increases Near Disturbance-Fragmentation Susceptibility Boundaries
arXiv:2603.29116 ยท Chaos Susceptibility ยท $9.99
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Neutral Assortativity Maximizes Pudding-Susceptible Broadcast Lifetime
arXiv:2603.29833 ยท Chaos Susceptibility ยท $9.99
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Branching Susceptibility Produces a Nonconstant Collapse Bias in State-Chaining Interference Tests
arXiv:2603.15628 ยท Chaos Susceptibility ยท $5.99
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Group-Height Residuals in Solar Spicules Track Local Magnetic Chaos
arXiv:2603.20547 ยท Chaos Susceptibility ยท $2.99
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A Coherent Operator Bias of Less Than $3 \times 10^{-4}$ in Sycamore Cross-Entropy Residuals Would Falsify Chaos Susceptibility
arXiv:10.1038_s41586-019-1666-5 ยท Chaos Susceptibility ยท $5.99
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Galilean Frame Uncertainty Has No First-Order Pudding-Theoretic Residual
arXiv:2602.13327 ยท Chaos Susceptibility ยท $2.99
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Resonant Vacuum Noise Should Positively Shift Momentum-Dependent Phase-Space Curvature in Rubidium Atom Interferometers
arXiv:2602.13219 ยท Vacuum Receptivity ยท $9.99
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Target-Aligned Bias Scales With Nonlinear Instability in Wick's Wavefunction Model
arXiv:2602.09033 ยท Chaos Susceptibility ยท $9.99
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Circuit Instability Predicts Coherent Drift in D-Brane Stability Simulators
arXiv:2602.06089 ยท Chaos Susceptibility ยท $9.99
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Entropy Visit Residuals Persist After Markov Finite-Window Corrections in Macrosystems
arXiv:2602.06060 ยท Temporal Softening ยท $5.99
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Conditional Noether Currents Do Not Support a Pudding Theory Postulate in arXiv:2602.06059
arXiv:2602.06059 ยท Vacuum Receptivity, Observer As Field, Intent As Negentropy ยท $9.99
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Finite-Threshold First-Passage Ratios Retain Excess Entropy Information in Hidden-State Dynamics
arXiv:openalex:W4281687081 ยท Temporal Softening ยท $2.99
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Mercuryโs Tangent-Normalized Drift Should Retain a Positive Lyapunov-Susceptibility Excess
arXiv:openalex:W4368376860 ยท Chaos Susceptibility ยท $9.99
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Endpoint First-Passage Residual Curvature Should Survive a Full Three-State Fokker-Planck Null in Six-Dimensional Gauss-Bonnet AdS Black Holes
arXiv:openalex:W4406732321 ยท Chaos Susceptibility, Temporal Softening, Proximity Gradient ยท $2.99
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Snyder Radiation Suppression Depends on Vacuum Coherence at Fixed Temperature
arXiv:2602.02506 ยท Vacuum Receptivity ยท $2.99
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Physical-Seed Logistic Maps at \(r=4\) Should Show Target-Signed Finite-Time Lyapunov Drift Under Attention
arXiv:2602.02622 ยท Chaos Susceptibility, Temporal Softening ยท $5.99
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Coherent Perturbations in Chaotic Network Reductions Should Produce Lyapunov-Scaled Residual Power
arXiv:2602.00039 ยท Chaos Susceptibility ยท $9.99
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Coherence-Prepared Scale Quantization Predicts Off-Diagonal Vacuum-Mode Covariance
arXiv:2601.15649 ยท Vacuum Receptivity ยท $2.99
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Chaos Susceptibility Predicts a Phase-Locked Hazard Ratio Above 1.002 in Fold-Tuned Landau-QCD Escape
arXiv:2601.15343 ยท Chaos Susceptibility, Temporal Softening ยท $5.99
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A Regular Rivas Electron Trajectory Should Show No Information-Locked Phase Residual Above \(10^{-12}\) Radians Per Cycle
arXiv:2601.11597 ยท Chaos Susceptibility ยท $9.99
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PIIP Accuracy Will Not Vary by Evaluator Proximity Under Fixed Checkpoints
arXiv:2406.04330 ยท Material Memory, Observer As Field, Proximity Gradient ยท $5.99
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Weak Property \((\mathrm{T}_{L^p})\) Has No Observer-Dependent Bias Term
arXiv:2403.05312 ยท Signal Dominance, Material Memory, Vacuum Receptivity ยท $9.99