By Behram N. Kursunogammalu, Stephan L. Mintz, Arnold Perlmutter
This convention was once in keeping with the invention that neutrinos are huge items, which provides straight forward particle physics a brand new path. this is often the 1st in a chain of meetings that would talk about the results of this discovery and comparable concerns, corresponding to the influence on cosmology, proton spin content material, strings, fractional spin and statistics, gravitation, and speeded up enlargement of the universe.
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Extra info for Confluence of Cosmology, Massive Neutrinos, Elementary Particles, and Gravitation
The energy-momentum-stress densities represented by an electromagnetic type tensor Tµv for massless and massive bosons is not accidental but the proper way to unify all the interactions. , TUU = 0) can be decomposed into 0, 1, 2 spin parts as (101) By using (81)-(86) it can easily be seen that for a point charge with Jeµ = e v one of the wave equations (96)-(99) yield terms like µ G(x-[ any and form the basis for the derivation of the usual gauge invariant Dirac wave equation describing the interaction of a photon with a point electric charge.
Hydrocarbon contributions in the 40 amu range have been reduced to close to 10-12 torr. LIGO Pre-Stabilized Laser The LIGO Pre-stabilized Laser (PSL) will provide a frequency-stabilized laser source for the LIGO interferometers. A schematic of the PSL layout is shown in Figure 5. At the heart of the PSL is a Lightwave Electronics single longitudinal mode Nd:YAG laser operating at 1064 nm. The Lightwave laser is configured as a master oscillator power amplifier (MOPA) producing 10 W of output power and nominal TEM00 (Gaussian) beam mode.
10. D. Sigg, “Gravitational Waves” to be published in the Proceedings of the Texas Symposium on Relativistic Astrophysics, J. Paul, ed. (London, Elsevier, 1999). 1 1. P. R. Saulson, Fundamentals of Interferometric Gravitational Wave Detectors, World Scientific, Singapore, 1994. 12. T. Lyons and M. Regehr, “Shot noise in a recycled, unbalanced LIGO interferometer”, LIGO Technical Report #113 (1994). 13. B. Wilke, N. Uehara, E. K. Gustafson, R. L. Byer, P. J. King, S. U. Seel, and R. L. Savage, Jr.
Confluence of Cosmology, Massive Neutrinos, Elementary Particles, and Gravitation by Behram N. Kursunogammalu, Stephan L. Mintz, Arnold Perlmutter