ENERGY-TRANSFER FROM RARE-GASES TO SURFACES - COLLISIONS WITH GOLD AND PLATINUM IN THE RANGE 1-4000 EV

被引:84
作者
WINTERS, HF
COUFAL, H
RETTNER, CT
BETHUNE, DS
机构
[1] IBM Research Division, Almaden Research Center, San Jose, CA 95120-6099
来源
PHYSICAL REVIEW B | 1990年 / 41卷 / 10期
关键词
D O I
10.1103/PhysRevB.41.6240
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We have measured the energy transferred to a gold surface by impinging He+, Ar+, and Xe+ ions with kinetic energies in the range 54000 eV. This same quantity has been determined for He, Ar, and Xe atoms colliding with a Pt(111) surface. The ion studies employed a novel highly sensitive pyroelectric calorimeter together with a carefully designed compact ion gun. Pulses of nearly monoenergetic ions from the gun were directed at a gold film evaporated directly onto a pyroelectric material that develops a voltage proportional to the energy deposited. The atomic studies were made with supersonic beam techniques, whereby energy transfer is inferred from time-of-flight distributions of the incident and scattered species. The results from these very different experiments are in good agreement and give a fairly complete picture of energy transfer from incident rare-gas atoms and ions to these heavy-metal surfaces. For energies above about 10 eV, the ions transfer at least 60% of their energy, with Xe transferring the most and He the least. For lower incident energies, the energy transfer decreases, approaching zero-energy intercepts of 60%, 20%, and 5% for Xe, Ar, and He, respectively. The implications of these experimental results for the effective-mass concept, the binary-collision model, low-energy stopping powers, lattice penetration, and the theory of physical sputtering are considered, and we address the relevance of these findings to the technologically important processes of plasma etching and deposition of sputtered thin films and to particle-spacecraft interactions and controlled thermonuclear fusion. © 1990 The American Physical Society.
引用
收藏
页码:6240 / 6256
页数:17
相关论文
共 70 条
[1]   ATOM SURFACE SCATTERING DYNAMICS AT HYPERTHERMAL ENERGIES [J].
AMIRAV, A ;
CARDILLO, MJ ;
TREVOR, PL ;
LIM, C ;
TULLY, JC .
JOURNAL OF CHEMICAL PHYSICS, 1987, 87 (03) :1796-1807
[2]  
Andersen H. H., 1970, Radiation Effects, V3, P51, DOI 10.1080/00337577008235616
[3]  
Andersen H. H., 1971, Radiation Effects, V7, P179, DOI 10.1080/00337577108230986
[4]   ENERGY REFLECTED FROM SOLID TARGETS BOMBARDED WITH KEV PROTONS AND HELIUM IONS [J].
ANDERSEN, HH ;
LENSKJAER, T ;
SIDENIUS, G ;
SORENSEN, H .
JOURNAL OF APPLIED PHYSICS, 1976, 47 (01) :13-16
[5]  
Anderson JB, 1974, MOL BEAMS NOZZLE SOU, P1, DOI [10.1002/0471238961.1301191913151518.a01.pub2.MolecularBeamsandLowDensityGasdynamics, DOI 10.1002/0471238961.1301191913151518.A01.PUB2.MOLECULARBEAMSANDLOWDENSITYGASDYNAMICS]
[6]  
ARIFOV UA, 1961, INTERACTIN ATOMIC PA
[7]   SPUTTERING STUDIES WITH THE MONTE-CARLO PROGRAM TRIM.SP [J].
BIERSACK, JP ;
ECKSTEIN, W .
APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 1984, 34 (02) :73-94
[8]  
BRINZA DE, 1987, 1987 P NASA WORKSH A
[9]  
CARTER G, 1968, ION BOMBARDMENT SOLI, P33
[10]  
CARTER G, 1968, ION BOMBARDMENT SOLI, P100