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1.
Marshall  G. M.  Adamczak  A.  Bailey  J. M.  Beer  G. A.  Beveridge  J. L.  Douglas  J. L.  Faifman  M. P.  Fujiwara  M. C.  Huber  T. M.  Jacot-Guillarmod  R.  Kammel  P.  Kherani  N. P.  Kim  S. K.  Knowles  P. E.  Kunselman  A. R.  Maier  M.  Markushin  V. E.  Martoff  C. J.  Mason  G. R.  Melezhik  V. S.  Mulhauser  F.  Olin  A.  Petitjean  C.  Piller  C.  Porcelli  T. A.  Steffens  C. P.  Zhang  Y.  Zmeskal  J. 《Hyperfine Interactions》1996,101(1):47-55
Preliminary results are reported for an experiment at TRIUMF where a time-of-flight technique was tested for measuring the energy dependence of the rate for muon-catalyzed dt fusion. Muonic tritium atoms were created following transfer of negative muons from muonic protium in a layer of solid hydrogen (protium) containing a small fraction of tritium. The atoms escaped from the solid layer via the Ramsauer-Townsend mechanism, traversed a drift region of 18 mm, and then struck an adjacent layer of deuterium, where the muonic atom could form a molecular system. The time of detection of a fusion product (neutron or alpha) following muon arrival is dependent upon the energy of the muonic tritium atom as it traverses the drift region. By comparison of the time distribution of fusion events with a prediction based on the theoretical energy dependence of the rate, the strength of resonant formation can in principle be determined. The results extracted so far are discussed and the limitations of the method are examined.  相似文献   

2.
A main source of information about the muon-catalyzed fusion cycle in D-T mixtures are the cycling rates c, which are characteristic for the kinetic equilibrium of states attained rapidly in dense targets. The measurement, analysis and interpretation of these rates will be discussed, concentrating on the extensive set of rates observed at PSI over the last decade in gaseous, liquid and solid targets.Invited talk presented by Peter Kammel.  相似文献   

3.
Ackerbauer  P.  Jeitler  M.  Werner  J.  Breunlich  W. H.  Cargnelli  M.  Fussy  S.  Marton  J.  Scrinzi  A.  Zmeskal  J.  Bistirlich  J.  Crowe  K. M.  Kammel  P.  Kurck  J.  Petitjean  C.  Sherman  R. H.  Bossy  H.  Daniel  H.  Hartmann  F. J.  Neumann  W.  Schmidt  G. 《Hyperfine Interactions》1996,101(1):67-80
A comprehensive experimental study of the kinetics of muon-catalyzed dt fusion has been conducted at PSI, based on the measurement of the 14 MeV neutrons from the fusion process. The target conditions included densities from 1–150% of the atomic density of liquid hydrogen, relative tritium concentrations of 2–95%, and temperatures of 13–300 K. Information about the dt cycle has been obtained from the measured neutron time distributions by different methods: Monte Carlo simulations primarily aimed at investigating epithermal effects in molecular formation and the determination and interpretation of cycling rates describing the steady state regime.  相似文献   

4.
《Nuclear Physics A》1999,652(4):311-338
An experimental investigation of muon-catalyzed fusion (μCF) in gaseous, liquid and solid mixtures of deuterium and tritium was performed. The target conditions included the range of densities of 0.03 ≲ φ ≲ 1.5, tritium concentrations of 2% ≲ ct ≲ 90% and temperatures of 13 ≲ T ≲ 40K. The study was based on the analysis of observed cycling rates extracted from the measured time distributions of the fusion neutrons. For the first time, the density dependence of the rates λ(dtμ)d0 for the dtμ molecule formation in collisions of atoms in the lower (F=0) hyperfine state with D2 molecules was determined experimentally. Evidence for the proposed effects of below-threshold resonances on molecular formation was found. Measurements at low temperatures in mixtures of different molecular compositions revealed a clear predominance of the λ(dtμ)d0 formation rate. The probability q1s for atoms to reach the ground state was determined as a function of density and tritium concentration.  相似文献   

5.
6.
Fujiwara  M. C.  Bailey  J. M.  Beer  G. A.  Beveridge  J. L.  Gete  E.  Huber  T. M.  Jacot-Guillarmod  R.  Kammel  P.  Kherani  N. P.  Kim  S. K.  Knowles  P. E.  Kunselman  A. R.  Markushin  V. E.  Marshall  G. M.  Martoff  C. J.  Mason  G. R.  Mulhauser  F.  Olinc  A.  Petitjean  C.  Porcelli  T. A.  Stocki  T. J.  Zmeskal  J. 《Hyperfine Interactions》1996,101(1):613-621
We propose a direct measurement of muon sticking to alpha particles in muon-catalyzed dt fusion at a high density. Exploiting the features of a multilayer thin-film target developed at TRIUMF, the sticking is determined directly by detection of charged fusion products. Experimental separation of initial sticking and stripping may become possible for the first time. Monte Carlo simulations, as well as preliminary results of test measurements are described.  相似文献   

7.
A vast program of the experimental investigation of muon-catalyzed dt fusion was performed on the Joint Institute for Nuclear Research phasotron. Parameters of the dt cycle were obtained in a wide range of the D/T mixture conditions: temperatures of 20–800 K, densities of 0.2–1.2 of the liquid hydrogen density (LHD), and tritium concentrations of 15–86%. In this paper, the results obtained are summarized.  相似文献   

8.
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10.
A key process in the muon-catalysed fusion cycle is a low-energy collision of tµ with a D2 molecule which leads, at appropriate incident energies, to the formation of a resonant complex containing dtµ. In this paper the result is described of a formal derivation of the partial wave cross section for resonant dtµ formation, which makes use of elements of Feshbach's treatment of resonances. The expression obtained is similar to the Breit-Wigner formula. Full details of the calculation will be published elsewhere.  相似文献   

11.
12.
Local hot regions caused by energy deposition from stopped muons can significantly influence the cycle rate of muon catalyzed fusion. The observed nonlinear density dependence of molecular formation rates is explained as a result of the temperature dependence since muonic deuterium-tritium molecules are formed at a high effective temperature that increases roughly linearly with density.  相似文献   

13.
For the first time, we observed the dependence of the ddmu formation rate and the dmu hyperfine-transition rate on the ortho-para state in muon-catalyzed fusion in the solid D2 state, and found that the effect is even opposite to a recent theoretical prediction. We also determined the back-decay rate and the hyperfine-transition rate via scattering in solid state by using the ortho-para dependence. A theory to describe properly our experimental result is called for to understand the nature of muon-catalyzed fusion in the solid state.  相似文献   

14.
15.
The emission of µd and µt atoms from multilayer solid targets consisting of the mixtures of hydrogen isotopes has been investigated with a kinetics model. The methods to study the elastic scattering of muonic atoms, muon transfer, and molecular formation reactions with µ-atomic beams are discussed.  相似文献   

16.
A method for measurement of the muon-catalyzed fusion (μCF) parameters in an H-T mixture is proposed. The kinetics of the μ-atomic and μ-molecular processes preceding the pt reaction in the ptμ molecule is described. Analytical expressions are obtained for the yields and time distributions of γ quanta and conversion muons formed in nuclear fusion reactions in ptμ molecules. It is shown that information on the desired parameters μCF can be found from the joint analysis of the time distributions of γ quanta and conversion muons to be obtained in experiments with the H-T mixture at three (or more) appreciably different atomic concentrations of tritium. The experiments with the H-T mixture at the meson facility PSI (Switzerland) were optimized to gain precise information about the desired μCF parameters.  相似文献   

17.
Energy shifts in the shallowest level of the muonic moleculedtμ are estimated by using an accurate wave function of the point-charge three-body system which gives ε 11 0 = ?660.3 meV. Contributions of nuclear finite size, vacuum polarization, relativistic effect and internuclear interaction are evaluated to be +10.4 meV, +17.2 meV, +0.9 meV and ~ +10?4 meV, respectively. These corrections to ε 11 0 amount to 28.5 meV, which is significantly different from the corresponding value 20.6 meV of the Soviet group, with serious dependence on the dtμ, formation rate.  相似文献   

18.
A systematic experimental study on muon-catalyzed fusion was conducted using a series of solid deuterium and tritium mixtures. A variety of conditions were investigated, i.e., tritium concentrations from 20% to 70%, and temperatures from 5 to 16 K. With decreasing temperature, we observed an unexpected decrease in the muon cycling rate (lambda(c)) and an increase in the muon loss probability (W). The origins of these observed changes were interpreted by the temperature-dependence in the dt mu formation process for lambda(c) and that in the muon reactivation process after muon-to-alpha sticking for W.  相似文献   

19.
20.
A novel dynamical state has been observed in the dynamics of a perturbed sine-Gordon system. This resonant state has been experimentally observed as a singularity in the dc current-voltage characteristic of an annular Josephson tunnel junction, excited in the presence of a magnetic field. In this respect it can be assimilated to self-resonances known as Fiske steps. Differently from these, however, we demonstrate, on the basis of numerical simulations, that its detailed dynamics involves rotating fluxon pairs, a mechanism associated, so far, to self-resonances known as zero-field steps. This occurs because the size of nonlinear excitations is comparable with that of the system.  相似文献   

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