Low-energy elementary surface excitations of symmetric films of liquid4He atT=0 K |
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Authors: | Leszek Szybisz |
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Affiliation: | (1) Laboratorio TANDAR, Departmento de Física, Comisión Nacional de Energía Atómica, Av. del Libertador 8250, RA-1429 Buenos Aires, Argentina;(2) Present address: The Carrera del Investigador Científico of the Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Rivadavia 1917, RA-1033 Buenos Aires, Argentina |
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Abstract: | It is known that low-energy elementary excitations of symmetric films of liquid4He atT=0 K are characterized by a momentum q parallel to the surface and may be described by bound states. We have evaluated wave functions and energies of these states for both best short-ranged and optimal long-ranged correlations. Quantities of physical interest may be expressed in terms of these eigenstates and, in particular, for very small momenta (q<0.2 Å–1) they are mainly determined by the contribution due to the lowest-lying one. We propose analytic expressions for the lowest-lying excitations and fluctuations in the long-wavelength limit. It is proved that in this limiting case, the excitation energy LW(q) and the averaged static structure functionSLW(q) should go linearly to zero asq0, whereas the averaged direct correlationXLWDg(q) should diverge at the origin as 1/q. It is shown that numerical solutions exhibit the expected long-wavelength behavior provided that optimal correlations are used. All these results are displayed in a series of figures and are discussed in detail. |
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Keywords: | 67.40.Db 67.70.+n 68.10.-m |
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