[1] | A. Einstein, Zur Elektrodynamik bewegter Körper Annalen der Physik 17, 891-921 (1905). |
|
[2] | PAM Dirac: The Quantum Theory of the Electron. In: Proceedings of the Royal Society of London. Series A, Containing Papers of a Mathematical and Physical Character. A, Nr. 778, 1928, S. 610-624. |
|
[3] | Dieter Meschede: Gerthsen Physik. 23. Auflage, Springer, Berlin/Heidelberg/New York 2006. |
|
[4] | James Clerk Maxwell, A Dynamical Theory of the Electromagnetic Field, Royal Society Transactions 155, 1865, Seiten 459-512. |
|
[5] | Introduction to Electrodynamics (3rd Edition), D.J. Griffiths, Pearson Education, Dorling Kindersley, 2007. |
|
[6] | Electromagnetism (2nd Edition), I.S. Grant, W.R. Phillips, Manchester Physics, John Wiley & Sons, 2008 |
|
[7] | Dirac, Paul (1996), General Theory of Relativity, Princeton University Press |
|
[8] | Einstein, Albert (1916), "Die Grundlage der allgemeinen Relativitätstheorie", Annalen der Physik 49. |
|
[9] | Hartle, James B. (2003), Gravity: an Introduction to Einstein's General Relativity, San Francisco: Addison-Wesley |
|
[10] | M. Planck: Zur Theorie des Gesetzes der Energieverteilung im Normalspectrum. In: Verhandlungen der Deutschen physikalischen Gesellschaft. 2, Nr. 17, 1900, S. 245, Berlin (vorgetragen am 14. Dezember 1900). |
|
[11] | Roger Bach, Damian Pope, Sy-Hwang Liou, Herman Batelaan Controlled double-slit electron diffraction In: New Journal of Physics, Roger Bach et al 2013 New J. Phys. 15 033018. |
|
[12] | R. L. Jaffe: The Casimir Effect and the Quantum Vavuum. In: Physical Review D. Band 72, 2005 (online). |
|
[13] | J. Baez. What´s the energy density of the vacuum?, 2006 |
|
[14] | M. Gell-Mann: A Schematic Model of Baryons and Mesons in Phys. Lett. 8, 1964, 214-215. |
|
[15] | Moshe Carmeli, John G. Hartnett, Firmin J. Oliveira On the anomalous acceleration of Pioneer spacecraft Int.J.Theor.Phys. 45 (2006) 1074-1078. |
|
[16] | Albert Einstein: Erklärung der Perihelbewegung des Merkur aus der allgemeinen Relativitätstheorie. In: Sitzungsberichte der Preußischen Akademie der Wissenschaften. |
|
[17] | Chandrasekhar Roychoudhuri, Rajarshi Roy: The nature of light: What is a photon? In: Optics and Photonics News. 14, Nr. 10, 2003, ISSN 1047-6938, Supplement, S. 49-82. |
|
[18] | Harry Paul: Photonen: Eine Einführung in die Quantenoptik. 2. Auflage. Teubner, Stuttgart 1999, ISBN 3-519-13222-2. (Teubner-Studienbücher Physik). |
|
[19] | Klaus Hentschel: Einstein und die Lichtquantenhypothese. In: Naturwissenschaftliche Rundschau. 58(6), 2005, ISSN 0028-1050, S. 311-319. |
|
[20] | Liang-Cheng Tu, Jun Luo, George T. Gillies: The mass of the photon. In: Reports on Progress in Physics. 68, Nr. 1, 2005, S. 77-130. |
|
[21] | J D Franson Apparent correction to the speed of light in a gravitational potential In: New Journal of Physics, J D Franson 2014 New J. Phys. 16 065008. |
|
[22] | Berestetskii V B, Lifshitz E M and Pitaevskii L P 1980 Quantum Electrodynamics (Oxford: Pergamon). |
|
[23] | H. Grote: On the possibility of vacuum QED measurements with gravitational wave detectors In: Phys. Rev. D 91, 0220022-7 January 2015. |
|
[24] | Max Born, Albert Einstein: Albert Einstein, Max Born. Briefwechsel 1916-1955. München (Nymphenburger) 1955, S. 210. |
|
[25] | Simon Gröblacher, Tomasz Paterek, Rainer Kaltenbaek, Caslav Brukner, Marek Zukowski, Markus Aspelmeyer, Anton Zeilinger: An experimental test of non-local realism. In: Nature. 446, 2007, S. 871-875. (Abstract). |
|
[26] | Jacob Biemond The MagneticFfield of Pulsars and the Gravito-Magnetic Theory Trends in Pulsar Research (Ed. Lowry, J. A.), Nova Science Publishers, New York, Chapter 2 (2007). |
|
[27] | Shervgi S. Shahverdiyev Unification of Electromagnetism and Gravitation in the Framework of General Geometry Proceedings of the workshop in "Fizika" N 12, 2004. |
|
[28] | Friedrich W. Hehl An Assesment of Evans´Uunified Field Theory Foundations of Physics 38 (2008) 7-37. |
|
[29] | Bahram Mashhoon, Frank Gronwald and Herbert I.M. Lichtenegger Gravitomagnetism and the Clock Effect Lect.Notes Phys. 562 (2001) 83-108. |
|
[30] | Sumana Bhadra Electromagnetic Mass Models in General Theory of Relativity Ph.D. thesis, Sambalpur University, Jyoti Vihar, Burla – 768019, Orissa, India (2007). |
|
[31] | J.H. Field Forces Between Electric Charges in Motion: Rutherford Scattering, Circular Keplerian Orbits, Action-at-a-Distance and Newton’s Third Law in Relativistic Classical Electrodynamics arXiv:physics/0507150v3 (2007) |
|
[32] | J.H.Field Classical Electromagnetism as a Consequence of Coulomb's Law, Special Relativity and Hamilton's Principle and its Relationship to Quantum Electrodynamics Phys.Scripta 74 (2006) 702-717. |
|
[33] | M. Tajmar and C. J. de Matos Extended Analysis of Gravitomagnetic Fields in Rotating Superconductors and Superfluids ARC Seibersdorf research GmbH, A-2444 Seibersdorf, Austria and ESA-HQ, European Space Agency, 8-10 rue Mario Nikis, 75015 Paris, France. |
|
[34] | M. Tajmar, F. Plesecu, B. Seifert and K. Marhold Measurement of Gravitomagnetic and Acceleration Fields Around Rotating Superconducters AIP Conf. Proc. 880, 1071 (2007). |
|
[35] | Martin Tajmar, Florin Plesescu, Klaus Marhold and Clovis J. Matos Experimental Detection of the Gravitomagnetic London Moment Space Propulsion, ARC Seibersdorf research GmbH, A-2444 Seibersdorf, Austria and ESA-HQ, European Space Agency, 8-10 rue Mario Nikis, 75015 Paris, France (2006). |
|
[36] | V.V. Roschin and S. M. Godin Experimental Research of the Magnetic-Gravity Effects Institute for High Temperatures, Russian Academy of Science |
|
[37] | H.-J. Hochecker Theory of Objects of space At: http://www,hochecker.eu. |
|