| _version_ | 1866901891479240704 |
|---|---|
| author | McKinley, John Christian William |
| author_facet | McKinley, John Christian William |
| contents | <p>In this short note, independent researcher John C. W. McKinley proposes the Binary Law of Quanta: a quantum’s location is not a continuous trajectory but a binary choice between emitter and absorber. The law reframes emission as a timeless toggle (0 at the emitter, 1 at the absorber), eliminating the paradox of orphan quanta and linking physics to digital information. A falsifiable test is outlined: if no absorber exists, emission should be suppressed entirely, in contrast to orthodox QED predictions. This law builds on the Timeless Light Model, where conservation is enforced by a senior, timeless layer of the universe.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_16913425 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | The Binary Law of Quanta: Location as a Timeless Choice McKinley, John Christian William Quantum foundations; absorber theory; photon emission; timeless light model; binary law; quanta transfer; digital physics; falsifiability; quantum optics; no orphan photons <p>In this short note, independent researcher John C. W. McKinley proposes the Binary Law of Quanta: a quantum’s location is not a continuous trajectory but a binary choice between emitter and absorber. The law reframes emission as a timeless toggle (0 at the emitter, 1 at the absorber), eliminating the paradox of orphan quanta and linking physics to digital information. A falsifiable test is outlined: if no absorber exists, emission should be suppressed entirely, in contrast to orthodox QED predictions. This law builds on the Timeless Light Model, where conservation is enforced by a senior, timeless layer of the universe.</p> |
| title | The Binary Law of Quanta: Location as a Timeless Choice |
| topic | Quantum foundations; absorber theory; photon emission; timeless light model; binary law; quanta transfer; digital physics; falsifiability; quantum optics; no orphan photons |
| url | https://doi.org/10.5281/zenodo.16913425 |