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Physics 8805: Nuclear Few- and Many-Body Physics
Physics 8805: Nuclear Few- and Many-Body Physics

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Why is the propagation velocity of a photon in a... reduced?

... given by M. B. James and D. J. Griffiths,5 who used a perturbative approach to analyze the polarization of the medium by an electric field. The reader is advised to consult this article for a comparison. I will start by stating the basic assumptions of the path integral formalism applied to the prop ...
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... We call (6) the “effective” energy because it is really the energy of the analogue problem, and not the real problem. The true potential energy V (r, t) of the test particle is defined to be the amount of work we must supply to move the particle to its present location from some fixed reference point, ...
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... A surprising effect was noted in the recent experiment. Ratio of magnetic and electric form factors change with Q2 ?! The recent polarisation data question the results using Rosenbluth separation – latest thinking is that double photon exchanges cause the discrepancy between the 2 methods ...
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... this paper is taken as 4.65 x 10¯10 E.S. unit. We shall suppose that for distances less than 10¯12 cm. the central charge and also the charge on the alpha particle may be supposed to be concentrated at a point. It will be shown that the main deductions from the theory are independent of whether the ...
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... Why these results? In first place, we must see that we have assumed l=0, i.e., we have neglected the centrifugal potential term. This term has an effect of increasing the height and width of the Coulomb barrier. Note that this problem could be solved, in first approximation, knowing the solution of ...
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1911

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... theoretically from the Fano profile formula (black line) and (ii) by inverting swarm data (Nakamura and Lucas, J Phys D 11, 325 (1978)) using momentum transfer theory (red line ) (P. ...
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... done by Ernest Rutherford and collaborators in the period going from 1906 to 1913. In 1906 Rutherford was studying the scattering of alpha particles (helium nuclei, made by two protons and two neutrons) through thin metal (gold, silver) foils (about 4 m thick, not enough to stop alpha particles), o ...
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... the long range interactions must be included in a particle ensemble. Second the hot-carrier and short-channel effects will have a significant impact on device performance due to the small number of carriers and impurities in the active region of nanoscale devices. Although ensemble Monte Carlo (EMC) ...
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Study Notes

PowerPoint Presentation - Chapter 3 Kinematics in 2d
PowerPoint Presentation - Chapter 3 Kinematics in 2d

Slide 1
Slide 1

< 1 ... 39 40 41 42 43 44 45 46 47 ... 62 >

Monte Carlo methods for electron transport

The Monte Carlo method for electron transport is a semiclassical Monte Carlo(MC) approach of modeling semiconductor transport. Assuming the carrier motion consists of free flights interrupted by scattering mechanisms, a computer is utilized to simulate the trajectories of particles as they move across the device under the influence of an electric field using classical mechanics. The scattering events and the duration of particle flight is determined through the use of random numbers.
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