Quantum Gravity 104.9: More Re Confirmation By Raymond Y. Chiao of U.C. Merced of EM-g Relationships
- From: "OsherD" <mdoctorow@xxxxxxxxxxx>
- Date: 18 Mar 2007 23:46:39 -0700
From Osher Doctorow
Chiao has 20 papers in arXiv, 1995 through 2007, and is Professor at
U.C. Berkeley (his visit to U.C. Merced is presumably temporary).
His paper emphasizes power and dimensional analysis together with an
almost encyclopedia-type knowledge of electromagnetism and
gravitation, GR, Quantum theory, scattering, superconductors, etc.
He focuses on power in his Section 3 (Gravity and electromagnetic
radiation powers emitted by two electrons) equations (5), (6), (7),
(8), Section 4 (Planck Mass Scale) equation (12), etc.
Impedance and impedance matching play an important role in his paper,
as in Section 5 (Maxwell-like equations that result from linearizing
Einstein's equation) equation (20), Section 6 (Specular reflection of
gravity waves from superconductors and other quantum fluids) equations
(21) and (22).
His Section 9 makes good use of Probability (Section 9 is Mossbauer-
like response of MOD in strong magnetic fields to radiation fields)
equation (30), which I type below in my notation:
1) P(zero internal excitation) = (approximately) 1 - exp(-E_gap/(k_B
T) --> 1 as k_B T/E_gap --> 0
where E_gap is the energy gap separating the ground state from the
lowest permissible excited state, k_B is Boltzmann's constant, T is
temperature of system. This (1) is a criterion for zero-phonon or
Massbauer-like mode of response of electron-dependent system is that
the temperature of the system is low enough so that the probability of
the entire system remaining in its ground state, without even a single
quantum of excitation of its internal degrees of freedom being
excited, is very high (near 1).
Osher Doctorow
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