Carte INSIDE THE LIGHT CONE Luigi Cardarella

INSIDE THE LIGHT CONE

SDEM and the Geometry of Effective Spacetime

Limbă: engleză
Legare: Carte broșată
Disponibilitate: În depozitul extern
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Every discussion about faster-than-light travel begins in the same place: the wall.The speed of ligh...

Informații despre carte

Limbă
engleză
Legare
Carte - Carte broșată
Publicat
2026
Pagini
202
EAN
9798196930492
Enbook ID
52816531
Greutate
496
Dimensiuni
178 x 254 x 13

Descriere completă

Every discussion about faster-than-light travel begins in the same place: the wall.

The speed of light. The absolute limit built into the structure of spacetime itself. The reason Voyager 1, after nearly fifty years of travel, has barely begun to leave the solar system.

This book does not pretend the wall does not exist.

It asks a different question entirely:

What if the problem is not the speed - but the geometry?

Inside the Light Cone introduces SDEM (Sectorial Disformal Effective Metric), a matter-first theoretical framework for effective geodesic reduction. Instead of starting from an impossible warp geometry and asking what exotic matter might produce it, SDEM starts from a physically admissible scalar field and asks what effective geometry naturally emerges.

No exotic matter.
No violations of known energy conditions.
No promises the physics cannot keep.


The framework develops step by step:
from scalar fields and disformal geometry,
to effective spacetime compression,
to SDEM-2 Optical - where the electromagnetic sector produces a concrete, falsifiable laboratory prediction through measurable interferometric effects in magnetized plasma.

The implications reach beyond propulsion.

A SDEM telescope would not simply look farther into the universe.
It would reduce the temporal delay of observation itself.

Perhaps we are not searching for life in the wrong place.
Perhaps we are searching in the wrong time.

Written simultaneously for the curious reader, the engineer, and the physicist, the book combines narrative explanation, full mathematical derivations, and executable C# toy models into a single layered framework.

The goal is not to claim victory over physics.

The goal is to build a language precise enough to ask the right questions.