A computer simulation of the interaction between randomly distributed dipoles
Herbert Kliem, P. Fuhrmann
Abstract
Herbert Kliem, P. Fuhrmann
Abstract
Arkel and Snoek (1934) reported on the dielectric behavior of concentrated solutions of dipole substances. They found that the polarization shows a marked decrease with increasing dipole concentration. In the present work, it is deduced that such a behavior can be explained by nonlinear electrostatic dipole interaction. At high concentration the counteracting dipolar fields become much higher than external field strengths usually applied to the dielectric. The polarization of N>
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Arkel and Snoek (1934) reported on the dielectric behavior of concentrated solutions of dipole substances. They found that the polarization shows a marked decrease with increasing dipole concentration. In the present work, it is deduced that such a behavior can be explained by nonlinear electrostatic dipole interaction. At high concentration the counteracting dipolar fields become much higher than external field strengths usually applied to the dielectric. The polarization of N>
Key concepts: Dipole, Dielectric, Polarization (electrochemistry), Electrostatics, Moment (physics), Condensed matter physics, Nonlinear system, Polarization density