Download Atomic, Molecular, and Optical Physics: Charged Particles, by F. B. Dunning PDF

By F. B. Dunning

With this quantity, tools of Experimental Physics turns into Experimental equipment within the actual Sciences, a reputation switch which displays the evolution of todays technology. This quantity is the 1st of 3 so that it will offer a accomplished therapy of the most important experimental equipment of atomic, molecular, and optical physics; the 3 volumes as a suite will shape a good experimental instruction manual for the sphere. The large availability of tunable lasers within the pastseveral years has revolutionized the sphere and result in the advent of many new experimental tools which are lined in those volumes. conventional equipment also are integrated to make sure that the volumes might be a whole reference resource for the sphere.

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Additional info for Atomic, Molecular, and Optical Physics: Charged Particles, Volume 29A

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Lubelsmeyer, and W. Jentschke, Phys. Lett. B 77B, 347 (1978). 21. C. Y. Prescott, W. B. Atwood, R. L. A. Cottrell, H. DeStaebler, E. L. Garwin, A. Gonidec, R. H. Miller, L. S. Rochester, T. Sato, F. J. Sherden, C. K. Sinclair, S. Stein, R. E. Taylor, C. Young, J. E. Clendenin, V. W. Hughes, N. Sasao, K. P. Schuler, M. G. Borghini, K. Lubelsmeyer, and W. Jentschke, Phys. Lett. B 84B, 524 (1979). 22. C. K. Sinclair, Proc. Int. Symp. High Energy Spin Phys. 6th, Marseille, 1984; J . Phys. 46, C2-669 (1985).

We present two approaches to preparing photocathodes for polarized electron sources: (1) a known, reliable method which gives cathodes with the lower quantum efficiency, but which are still quite adequate for most applications (we label these “adequate” cathodes), and (2) some considerations for obtaining the higher quantum efficiency cathodes (we label these “optimum” cathodes). High-quantum-efficiency cathodes that optimize the electron escape probability may be important in cases in which the incident light intensity must be limited or in which the thickness of the photocathode layer is constrained.

Rochester, T. Sato, F. J. Sherden, C. K. Sinclair, S. Stein, R. E. Taylor, C. Young, J. E. Clendenin, V. W. Hughes, N. Sasao, K. P. Schuler, M. G. Borghini, K. Lubelsmeyer, and W. Jentschke, Phys. Lett. B 84B, 524 (1979). 22. C. K. Sinclair, Proc. Int. Symp. High Energy Spin Phys. 6th, Marseille, 1984; J . Phys. 46, C2-669 (1985). 23. C. K. Sinclair, Proc. Int. Symp. High Energy Spin Phys. 8th, Minneapolis, 1988; AIP Conf. Proc. 187, 1412 (1989). 24. E. Reichert, Proc. Int. Symp. High Energy Spin Phys.

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