Rethinking the Foundations
of Quantum Physics

A clear and logical approach to the deepest questions of quantum physics and theory of everything. Explained step by step, without paradoxes or obscure interpretations. For curious minds, students, and researchers alike.

Why rethink quantum physics?

Quantum physics is full of paradoxes — cats both dead and alive, waves behaving like particles, and experiments no one can fully explain.

These mysteries come from assumptions made a century ago, when the structure of matter was still poorly understood.

The Spacetime Model revisits these foundations with logic, consistency, and modern knowledge — offering a clearer path to understanding the quantum world.

Quantum Mechanics Today

One evening, in a cabaret, a magician performs a trick known as the “Brachetti Polka-Dot Scarf.” He shakes the scarf, and the dots fall to the ground. He shakes it again, and the dots magically reappear on the scarf.

One of his physicist friends, astonished, watches the act unfold. Unable to comprehend the illusion, he decides to explain it “his own way.” He imagines a theory to explain the trick — a theory he calls the “Superposition of States”. According to this idea, a system can exist in two states at once. Thus, the scarf would be both plain and polka-dotted at the same time.

Schrödinger's cat.

The superposition of states is illustrated by Schrödinger’s famous thought experiment: a cat both dead and alive at the same time.

This took place in the 1920s, when the structure of matter was still poorly understood.

Today, physicists are still unable to explain some fundamental phenomena in a clear and logically consistent way. These paradoxes reveal that the foundations of quantum mechanics were built on assumptions that must now be re-examined with modern knowledge.

Enigmas of Quantum Mechanics

In the 1920s, our understanding of the atom was still extremely limited. The proton had only just been identified in 1919, and electrons were imagined as scattered raisins in a plum pudding. Quantum mechanics was built on this incomplete knowledge of atomic structure, which inevitably led to assumptions that were not entirely accurate.

As a result, quantum mechanics contains more than fifty unresolved enigmas.

Quantum mechanics puzzle

Quantum mechanics resembles a jigsaw puzzle assembled in the 1920s on foundations that were not yet fully understood. Some pieces were placed incorrectly from the start. Over time, physicists continued to build upon these early assumptions without realizing that the initial pieces had been placed incorrectly.

This situation gradually produced a framework that even experts find difficult to interpret with complete clarity. As Richard Feynman famously said: “Nobody understands quantum mechanics.”

There is only one way to resolve these many riddles: return to the origins of the theory, re-examine each assumption with modern knowledge, and rebuild the puzzle with logic and consistency. Of course, what is correct must be preserved — only the flawed foundations need to be reconsidered.

Contents of the Spacetime Model Theory

For more than twenty years, the author has devoted his work to resolving the many enigmas of quantum physics through rigorous, logical, and fully scientific methodology. The results of this research are presented on this website and detailed in the book New Quantum Physics V 2.00, available on Amazon. All mathematical developments — including the Einstein Field Equations — can be freely downloaded from the book.

To make this new Theory of Everything accessible, the Spacetime Model is organized into five interconnected parts. Each section addresses a fundamental mystery of physics with clarity, coherence, and modern scientific insight.

Part 1: Mass and Gravitation

What if mass and gravitation were actually the same phenomenon? This section unifies these concepts into a single physical framework and explains key enigmas such as the origin of E = mc² — all without invoking the Higgs boson.

Part 2: What Is Matter?

Explore the true nature of matter through a logical and intuitive framework. Wave–particle duality, the constancy of light speed, particle annihilation, and electron–positron pair creation are explained with clarity, revealing the underlying structure of matter.

Part 3: Quarks and Antimatter

What if the real location of antimatter in the universe were here, right under our eyes — embedded in the quarks? This section reveals exactly where antimatter is located and explains the origin of quark charges 1/3 and 2/3. It also outlines a rational path toward a new Standard Model based on rigorous logic and modern physical insight.

Part 4: Waves and Photons

Explore the mechanics of electromagnetism and the structure of photons as wave packets. Young’s double-slit experiment, the Pauli exclusion principle, the Heisenberg uncertainty principle, and the EPR paradox are revisited with coherence and logical consistency.

Part 5: Forces and the Universe

This final part unifies the four fundamental forces into two generic ones, explains the binary structure of atomic nuclei, and proposes a bold alternative to the Big Bang: Quantum Darwinism, a model in which the universe evolves through selection processes rather than an explosive event such as Lemaître’s 1931 primitive atom.

Three Key Riddles Solved by the Spacetime Model

The Spacetime Model also provides clear answers to three major quantum riddles. These examples are presented on a dedicated page for readers who wish to explore them in more detail before reading the entire website. To discover the three riddles, hit the hypertext link:

These three examples offer a first look of how the model resolves old paradoxes.

About this Website

This website presents the Spacetime Model, a theory developed through rigorous logic, modern scientific knowledge, and full compatibility with established physical laws.

It is intended for readers who seek clear, coherent explanations of the fundamental phenomena of quantum physics and the structure of matter.

The Spacetime Model does not rely on speculative or imaginary physical laws. It offers a rational framework built step by step from verified principles.

Prior to Beginning

The first pages introduce several new concepts. To follow the logic of the Spacetime Model clearly, it is best to read Parts 1 through 5 in order. Reading them randomly may lead to misunderstandings.

Structure of the theory: