Two-way and One-way Vacuum Speed of Light under the Membrane Paradigm
Stefan von Weber, Alexander von Eye
Physical Science International Journal · pp. 1–17 · Published 3 Jul 2017
10.9734/PSIJ/2017/32988Abstract
The discovery of cosmic microwave background radiation (CMB) by Wilson and Penzias defines a rest frame in the sense of Newton’s absolute space. This fact is one of the reasons why brane worlds moved into the focus of interest. Membrane theory (CM) uses the cosmological model of a 4-dimensional thin membrane, expanding in hyperspace. A homogeneous vector field acts perpendicularly from outside onto the membrane and causes, this way, curvature of space and gravitation. The membrane defines an absolute Newtonian space, and forces small changes of Special Relativity (SR). The most important difference between CM and SR is the introduction of a cross contraction of moving bodies. Photons travel always and only in the rest inertial reference frame. There is no difference between two-way and one-way speed of light. Far away from masses photons move with constant speed c. The rest inertial reference frame is defined by the absence of the dipole of the cosmic microwave background radiation (CMB), caused by the Doppler-effect. The speed of light is anisotropic in each inertial reference frame that is in relative motion with respect to the rest frame. Although the speed of light is constant in the vacuum, it can be measured on Earth only with a systematic error of ± 36.9 m/s. The reason is that the flow of time of the clocks on the Earth is not constant. The measurement of the one-way speed of light is a special issue. Although the speed of light is anisotropic in each moving inertial reference frame, the time transformation hides this fact nearly perfectly. A co-moving observer registers the arrival of the light signal after a time interval which suggests that speed of light is always c. To obtain this result, it is sufficient to accept the existence of a rest inertial reference frame and the transformation of time given by FitzGerald and Lorentz.
References (24)
- 1 A Measurement of Excess Antenna Temperature at 4080 Mc/s. [DOI]
- 2 Black holes: The membrane paradigm
- 3 Around-the-World Atomic Clocks: Predicted Relativistic Time Gains [DOI]
- 4 Time varying speed of light as a solution to cosmological puzzles [DOI]
- 5 Measurement of the neutrino velocity with the OPERA detector in the CNGS beam [DOI]
- 6 An Experimental Study of the Rate of a Moving Atomic Clock [DOI]
- 7 Dipole Anisotropy in the COBE Differential Microwave Radiometers First-Year Sky Maps [DOI]
- 8 Inflation driven by a vector field [DOI]
- 9 A test theory of special relativity: II. First order tests [DOI]
- 10 On the Influence of Gravitation on the Propagation of Light (1911) [DOI]
- 11 Dragging of inertial frames [DOI]
- 12 Clock synchronization and isotropy of the one-way speed of light [DOI]
- 13 The Physics of the Cosmic Microwave Background [DOI]
- 14 Pressure Shift and Broadening of Methane Line at 3.39 μ Studied by Laser-Saturated Molecular Absorption [DOI]
- 15 Speed of Light from Direct Frequency and Wavelength Measurements of the Methane-Stabilized Laser [DOI]
- 16 Note on varying speed of light cosmologies [DOI]
- 17 Test theories of special relativity [DOI]
- 18 The geometrical unification of gravity with its source [DOI]
- 19 Can the one-way speed of light be used for detection of violations of the relativity principle? [DOI]
- 20 Geodetic Precession under the Paradigm of a Cosmic Membrane [DOI]
- 21 On Vacuum Dispersion and Light Velocity. [DOI]
- 22 New varying speed of light theories
- 23 Solar system tests of brane world models
- 24 Relativistic mechanics in multiple time dimensions
Cited by 3
Stefan von Weber, A. von Eye · Physical Science International Journal · 2022
Stefan von Weber, A. von Eye · Physical Science International Journal · 2019
Stefan von Weber, A. von Eye · Physical Science International Journal · 2021
Related research
- Stefan-Boltzmann’s Law under Relativistic Conditions — shares topic coverage
- Research on Lorentz “Local Time” — shares topic coverage
- The Four Aspects of Matter and Radiation — shares topic coverage
- On the Synergic Relationships between Special Relativity and Quantum Theories — shares topic coverage
- The Relativistic Cyclotron Radiation in the Circular Rotating Frame of the Moving Heavy Particle — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
3
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.