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Murat Özer

Publications and source records attributed to Murat Özer.

13 recordsLinked to original sources

On the Equivalence Principle and a Unified Description of Gravitation and Electromagnetism

We first investigate the form the General Relativity Theory would have taken had the gravitational mass and the inertial mass of material objects been different. We then extend this analysis to electromagnetism and postulate an equivalence principle for the electromagnetic field. We argue that to each particle with a different electric charge-to-mass ratio in superimposed gravitational and electromagnetic fields there corresponds a spacetime manifold whose metric tensor $g_{μν}$ describes the dynamical actions of gravitation and electromagnetism. The electric field outside a charged sphere asserts itself independently rather than contributing to the gravitational field. The contribution of the electric field to the spacetime metric outside the charged sphere is shown to be similar to the gravitational one in the Schwartzschild metric but with a charge-to-mass ratio dependence of the test particle instead of the Reissner - Nordström metric, resulting in a unified description of gravitation and electromagnetism. We point out that there are existing experiments whose results can be explained by the equivalence principle for the electromagnetic field presented here. Additional experimental predictions of the theory are mentioned.

gr-qc

Electrostatic Time Dilation and Redshift

We first present the salient features of the gravitational time dilation and redshift effects in two ways; by considering the oscillation frequencies/rates of clocks at different heights/potentials and by considering the photons emitted by these clocks such as atoms/nuclei. We then point out to the extension of these gravitational effects to static electricity along with two experiments performed in the '30s with null results of the electrostatic redshift. We show that the absence of this redshift is a consequence of the conservation of electric charge. We discuss the electrical time dilation and redshift effects in detail and argue that the electrostatic time dilation in an electric field must be a fact of Nature. We then present a general relativistic scheme that explains this effect. We also introduce an electrical equivalence principle analogous to the gravitational one and demonstrate how to obtain the electrostatic time dilation by this principle. We emphasize the importance of ionic atomic clocks to measure this effect whose confirmation would support the general relativistic scheme presented. We finally go over an attempt in the literature to explain the impossibility of the experimental observation of the electrostatic redshift due to its smallness by employing the Reissner - Nordström metric in general relativity. We argue that the $Q^{\,2}$ - term in this metric is due to the minuscule contribution of the energy of the electric field of the central body to its gravitational field. Thus being gravitational, this metric cannot be used to calculate the amount of the alleged electrostatic redshift.

physics.gen-ph

Experimental Evidences Supporting the Extension of the Equivalence Principle to Electromagnetic Fields

The principle of equivalence postulating that an acceleration is indistinguishable from gravity by any experiment, is valid within families of particles having the same passive gravitational to inertial mass ratio $m_p/m_i$. Presently experimental observations indicate that we live in a universe with one single family for which $m_p/m_i=1$, but if we consider the imaginary case of a universe with several particle families having different $m_p/m_i$, the principle of equivalence would still apply to each one of them. On the basis of this generalized formulation of the equivalence principle, which becomes relative to sets of particles, and that we designate as the \textit{single-particle equivalence principle}, one demonstrates that inertial frames can also be implemented for sets of electrically charged particles, with the same charge-to-mass ratio $q/m_i$, accelerating in homogeneous electric and / or magnetic fields (by analogy with the case of particles in free fall in a homogeneous gravitational field). Experimental evidences in support of the proposed extension of the principle of equivalence to electric fields are presented. These consist in the Witteborn-Fairbank experiment which revealed that electrons do not fall in the Earth gravitational field, and the well know fact that electric charges do not radiate either when in free fall in a homogeneous gravitational field, or when being accelerated by a homogeneous electric field. The London moment in rotating superconductors is also supporting the proposed extension of the equivalence principle. Prospects for the future exploration of the consequences of the proposed theoretical scheme to unify electromagnetism with gravitation in the paradigm of curved space-time, are also briefly suggested.

physics.gen-ph

A Proposed New Test of General Relativity and a Possible Solution to the Cosmological Constant Problem

Following a conjecture of Feynman, we explore the possibility that only those energy forms that are associated with (massive or massless) particles couple to the gravitational field, but not others. We propose an experiment to deflect electrons by a small charged sphere to determine if the standard general relativity or this modified one corresponds to reality. The outcome of this experiment may also solve the cosmological constant problem.

physics.gen-ph

Metric Unification of Gravitation and Electromagnetism Solves the Cosmological Constant Problem

We first review the cosmological constant problem, and then mention a conjecture of Feynman according to which the general relativistic theory of gravity should be reformulated in such a way that energy does not couple to gravity. We point out that our recent unification of gravitation and electromagnetism through a symmetric tensor has the property that the free electromagnetic energy and the vacuum energy do not contribute explicitly to the curvature of spacetime just like the free gravitational energy. Therefore in this formulation of general relativity, the vacuum energy density has its very large value today as in the early universe, while the cosmological constant does not exist at all.

gr-qc

On the Possibility of Building a Black Hole for Electrons in the Laboratory

We point out in this work that if our recently proposed unified description of gravitation and electromagnetism through a symmetric metric tensor is true, then building in the laboratory black holes for electrons with radii r_E\ge 0.5m in air and with much smaller radii in a vacuum should be possible.

gr-qc

Is There an Age of the Universe Problem After the Hipparcos Data?

We have reanalyzed the age of the universe problem under the assumption that the lower limit on the age of the globular clusters is 11Gyr, as predicted by the recent Hipparcos data. We find that the globular cluster and the expansion ages in a λ=0 universe are consistent only if the present value H_0 of the Hubble constant is \le 60kms^{-1}Mpc^{-1}. If H_0\ge 60kms^{-1}Mpc^{-1} some kind of modification of the standard λ=0 model is required. Invoking a (time-independent) cosmological term λin the Einstein field equations, as has been done frequently before, we have found that due to the gravitational lensing restrictions a fla universe with the present matter density parameter Ω_M <0.5 is not problem free. A nonflat universe with Ω_M\le 1 does not suffer from the age problem if H_0\le 75kms^{-1}Mpc^{-1}.

astro-ph

Fate of the Universe, Age of the Universe, Dark Matter, and the Decaying Vacuum Energy

It is shown that in the cosmological models based on a vacuum energy decaying as a^{-2}, where a is the scale factor of the universe, the fate of the universe in regard to whether it will collapse in future or expand forever is determined not by the curvature constant k but by an effective curvature constant k_{eff}. It is argued that a closed universe with k=1 may expand forever, in other words simulate the expansion dynamics of a flat or an open universe because of the possibility that k_{eff}=0 or -1, respectively. Two such models, in one of which the vacuum does not interact with matter and in another of which it does, are studied. It is shown that the vacuum equation of state p_{vac}= -ρ_{vac} may be realized in a decaying vacuum cosmology provided the vacuum interacts wuth matter. The optical depths for gravitational lensing as a function of the matter density and other parameters in the models are calculated at a source redshift of 2. The age of the universe is discussed and shown to be compatible with the new Hipparcos lower limit of 11Gyr. The possibility that a time-varying vacuum energy may serve as dark matter is suggested.

astro-ph

Proposed Experiments to Test the Unified Description of Gravitation and Electromagnetism through a Symmetric Metric

If gravitation and electromagnetism are both described in terms of a symmetric metric tensor, then the deflection of an electron beam by a charged sphere should be different from its deflection according to the Reissner-Nordström solution of General Relativity. If such a unified description is true, the equivalence principle for the electric field implies that the photon has a nonzero effective electric charge-to-mass ratio and should be redshifted in an electric field and be deflected in a magnetic field. Experiments to test these predictions are proposed.

gr-qc

A Non-Singular Universe in String Cosmology

We consider the low-energy effective string action in four dimensions including the leading order-$α'$ terms. An exact homogeneous solution is obtained. It represents a non-singular expanding cosmological model in which the tensor fields tend to vanish as $t\to \infty$. The scale factor $a(t)$ of the very early universe in this model has the time dependence $a(t)^2=a_0^2+t^2$. The violation of the strong energy condition of classical General Relativity to avoid the initial singularity requires that the central charge deficit of the theory be larger than a certain value. The significance of this solution is discussed.

gr-qc

Spontaneous Decay of the Effective Cosmological Constant

We discuss the notion that quantum fields may induce an effective time-dependent cosmological constant which decays from a large initial value. It is shown that such cosmological models are viable in a non-de Sitter spacetime.

gr-qc

Implications of a Quantum Mechanical Treatment of the Universe

We attempt to treat the very early Universe according to quantum mechanics. Identifying the scale factor of the Universe with the width of the wave packet associated with it, we show that there cannot be an initial singularity and that the Universe expands. Invoking the correspondence principle, we obtain the scale factor of the Universe and demonstrate that the causality problem of the standard model is solved.

gr-qc

An Upper Bound on the Higgs Boson Mass from a Positivity Condition on the Mass Matrix

We impose the condition that the eigenvalues of the mass matrix in the shifted Lagrangian density be positive at ϕ=ϕ_{0}, the vacuum expectation value of the scalar field. Using the one-loop effective potential of the standard model, this condition leads to an upper bound on the Higgs boson mass m_{H}: m_{H}<230GeV, for a top quark mass of 175GeV.

hep-ph