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1.
《Physics letters. [Part B]》1988,206(3):522-526
We compute the cross section for the process e+e →Hff as a function of Higgs boson mass and of center-of-mass energies of Mz and beyond. We conclude that searches for a Higgs of mass less than 50 GeV are far more effective when carried out near the Z boson resonance that at any higher energy. However, a new window of Higgs boson masses extending from 50–107 GeV can be explored if and when e+e collisions can be studied with high luminosity at collision energies of 200 GeV. Collider energies at intermediate energies can play no useful role in the search for the Higgs.  相似文献   

2.
We have measured fragment kinetic energies in electron induced fission of 232Th for electron energies in the range 7 MeV ≦ Ee ≦ 66 MeV. The relative contribution of the distribution peak associated with high fragment kinetic energies decreases continuously with electron energy. This is interpreted as a relative increase of the symmetric fission yield as compared to the asymmetric fission yield; this fact in turn indicates a non-negligible increase in the average excitation of the fissioning nucleus, with the energy of the bombarding electrons, even above the giant dipole resonance.  相似文献   

3.
The rich phenomenology of crossings and anticrossings of energies and widths, observed in an isolated doublet of resonances when one control parameter is varied, is fully explained in terms of the topological properties of the energy hypersurfaces close to the degeneracy point. The hypersurface representing the complex resonance eigenvalues, as functions of the control parameters, has an algebraic branch point of rank one, and branch cuts in its real and imaginary parts, in parameter space. Associated with this singularity in parameter space, the scattering matrix, S (E), and the Green’s function, G (+)(k; r,r'), have one double pole in the unphysical sheet of the complex energy plane. We characterize the universal unfolding or deformation of any degeneracy point of two unbound states in parameter space by means of a universal 2-parameter family of functions which is contact equivalent to the pole position function of the isolated doublet of resonances at the exceptional point and includes all small perturbations of the degeneracy condition up to contact equivalence.  相似文献   

4.
5.
The total cross section as well as the differential cross section and polarization in the elastic scattering of 0.8–1.4 MeV neutrons by Y have been measured with neutron beams of energy spread less than 20 keV. Rather weak structure with widths ≈ 50 keV was observed at a few energies within this range. The data were analyzed by use of a model in which the scattering process is described in terms of resonance amplitudes superimposed on an optical-potential background. Although not completely definitive, this analysis indicates the existence of three intermediate-width resonances (two 1? and one 1+) at neutron energies between ≈ 1.0 and 1.2 MeV. The properties of the 1? resonances suggest that these are the parent states of the proposed T> components of the El giant resonance observed near 21 MeV excitation energy in 90Zr produced in the 89Y(p,γ0) reaction. The resolved resonance structure in this energy region is in reasonable agreement with a recent calculation of the energies and widths of negative-parity states in 90Y.  相似文献   

6.
We have investigated the ground state and the doubly excited 1,3P resonance states of plasma-embedded Li+ ion. The plasma effect is taken care of by using a screened Coulomb potential obtained from the Debye model. A correlated wave function has been used to represent the correlation effect between the charged particles. The ground state of Li+ in plasmas for different screening parameters has been estimated in the framework of Rayleigh-Ritz variational principle. In addition, a total of 18 resonances (9 each for 1P and 3P states) below the n=2 Li+ thresholds has been estimated by calculating the density of states using the stabilization method. For each spin state, this includes four members in the 2snp+ (2≤n ≤5) series, three members in the 2snp- (3≤n ≤5) series, and two members in the 2pnd (n=3, 4) series. The resonance energies and widths for various Debye parameters ranging from infinity to a small value for these 1,3P resonance states along with the ground state energies of Li+ and the Li2+ (1S), Li2+ (2S) threshold energies are reported. Furthermore, the wavelengths for the photo-absorption of lithium ion from its ground state to such 1P resonance states for different Debye lengths are also reported.  相似文献   

7.
We have performed a microscopic study of the3He(d,p) α reaction at astrophysical energies within the framework of the Resonating Group Method adopting three different effective nucleon-nucleon interactions. The calculations suggest that the low-energy3He(d,p) α cross section is in good approximation given by the contribution arising from the 3/2+ resonant state atE R =245 keV. In fact, the low-energy data can be better (and more physically) described by a single Breit-Wigner resonance parametrization than by a polynomial fit. Our fit to the3He(d,p) α cross section results in a noticeable reduction in the uncertainties of the resonance parameters of the 3/2+ resonant state as well as in a significantly improved extrapolation of the data to astrophysically important energies. On the basis of this extrapolation we were able to quantitatively deduce the enhancement of the low-energy cross section due to electron screening effects from the data of Krauss et al. and Engstler et al. These experimental enhancement factors were compared with various theoretical models which are all based on the Born-Oppenheimer approximation. As the models underestimate the observed enhancement we suggest that the theoretical study of electron screening effects requires a dynamical treatment.  相似文献   

8.
We present measurements of infrared inter-subband absorption for electron subbands on (1 1 1)-Si for densities Ns up to ~ 1013 cm?2 at 4.2 K for both parallel- and perpendicular-excitation geometries. Contrary to previously published work the depolarization shift is identified as a sizeable splitting of the resonance energies E01 and Ez.dfnc;01. The comparison with a recent calculations is given.  相似文献   

9.
The electric giant dipole resonance of 24?26Mg has been explored up to 30 MeV excitation energy with bremsstrahlung. ΔE, E spectra of charged photo-particles and spectra of prompt deexcitation γ-rays from excited residual nuclear states were obtained at various bremsstrahlung endpoint energies. The 25Mg(γ, p0), (γ, d), 24,25Mg(γ, α) differential cross sections as well as 24?26Mg(γ, ′) integrated cross sections are presented. The results are discussed in terms of one-particle, one-hole excitations and isospin composition of giant resonance states. A comparison with calculations for 24Mg gives poor agreement. Excitations from deeper shells were found in the giant dipole resonance of 24Mg, but do not seem to be concentrated at higher energies. In 25Mg, only weak excitations of this kind were found, and they are completely absent in 26Mg.  相似文献   

10.
We obtained crystals of RuS2 doped with 57Fe from a Bi melt and determined the EPR hyperfine structure corresponding to 57Fe3+ in low-spin configuration. In crystals that were doped with both Fe and Cr an increase of the Fe3+ resonance and a simultaneous decrease of the Cr3+ resonance occurred by IR irradiation and revealed the same wavelength dependence. Compared with as-grown crystals the iron-doped crystals turned out to have a rather high electrical resistivity of about 104Omega cm at room temperature. For these iron-doped crystals two different activation energies of 0.04 eV and 0.35 eV of the free charge carriers (electrons) were determined from measurements of the electrical conductivity in the range of 94 K and 294 K. Received: 29 July 1996/Accepted: 13 November 1996  相似文献   

11.
We study the mass, width and couplings of the lightest resonance multiplet with I (J PC ) = 1 (1-) quantum numbers. Effective field theories based on chiral symmetry are employed in order to describe the form factor associated with the two pseudoscalar matrix element of the QCD vector current. The bare poles of the intermediate resonances are regularized through a Dyson-Schwinger-like summation. We explore the role of the resonance width in physical observables and make a coupled-channel analysis of the final-state interactions. This provides many interesting properties, like the pole mass MeV. At energies GeV, a second 1 (1-) resonance multiplet is considered in order to describe the data in a more consistent way. From the phenomenologically extracted resonance couplings, we obtain the chiral coupling , at MeV, and show how the running with the scale μ affects the resonance parameters. A 1/N C counting is adopted in this work and the consistency of the large-NC expansion is tested. Finally, we make an estimation of the contribution from diagrams with resonances in crossed channels. Received: 23 August 2002 / Published online: 19 February 2003  相似文献   

12.
We review the experimental evidence for alpha chain states in 4N-nuclei. Bloch-Brink cranked cluster model calculations suggest that such states should exist in all light A=4N nuclei. Recently a strong resonance has been observed in the12C(12C,12C(O 2 + ))12C(O 2 + ) reaction at 33 MeV which has been taken as evidence of a 6-α chain state in24Mg. The angular distributions show strong peaks at 90° due to the simultaneous excitation of several nearly degenerate resonances with a range of L-values. We review our analysis of these data and present the results of calculations for the widths of resonances in hyperdeformed nuclei. We demonstrate that such resonances may have relatively narrow widths despite their high excitation energies. We surmise that the 33 MeV resonance in12C+12C scattering has a chain state structure.  相似文献   

13.
Scattering of laser light from single magnons has been observed in the canted antiferromagnet FeF3 as a function of temperature (260 – 360°K) and wave-vector (2 × 105 ? 3 × 104cm?1). Measured magnon energies ranging up to 3.3 cm?1 (260°K) and line widths are in good agreement with data from microwave resonance work.  相似文献   

14.
The35Cl nuclear quadrupole resonance (NQR) frequency (vQ), nuclear quadrupole spinlattice relaxation time (T1Q),1H nuclear magnetic resonance second moment (M2) and nuclear magnetic spin-lattice relaxation timeT 1) were measured for polycrystalline chloramphenicol (drug) as a function of temperature. Hindered rotation of the CHC12 group and the phenyl ring was detected, the relevant activation energies were determined. The rotations are discussed in detail.  相似文献   

15.
The Vk centre in halide crystals is often described in terms of an X2? molecule ion. Recent molecular calculations for the halogen molecule negative ions have enabled a detailed comparison to be made between the theoretical anion and the results from optical and spin resonance studies on the crystals. The optical absorption line widths are naturally dependant on the host lattice, but the excitation energies and spin resonance constants may be readily interpreted in terms of the molecule. Certain anomalies in the spin resonance data for the heteronuclear defects, in particular ClI? and BrI?, show that the simple wavefunction constructed from “s” and “p” atomic orbitals does not adequately describe the polarisation of the large halogen atoms, and a more flexible wavefunction will be needed to calculate the spin resonance constants for these ions.  相似文献   

16.
We exposed small size-controlled lead clusters with a few hundreds of atoms to laser pulses with peak intensities up to 1015 W cm-2 and durations between 60 fs to 2.5 ps. We measured kinetic energies and ionic charge of fragments as a function of the laser intensity and pulse duration. Highly charged Pbn+ ions up to n = 26 have been detected presenting kinetic energies up to 15 keV. For comparison with our experimental results, we have performed simulations of the laser coupling with a cluster-sized lead nanoplasma using a qualitative model that was initially proposed by Ditmire and co-workers at LLNL for the case of rare gas clusters. From these simulations we conclude that two mechanisms are responsible for the explosion dynamics of small lead clusters. As already observed for large rare gas clusters (n = 106), fragments with charge states below +10 are driven by Coulomb forces, whereas the higher charged fragments are accelerated by hydrodynamic forces. The latter mechanism is a direct consequence of the strong laser heating of the electron cloud in the nanoplasma arising from a plasmon-like resonance occurring at n e = 3n c. In order to obtain an optimized laser-nanoplasma coupling, our results suggest that the plasma resonance should occur at the peak intensity of the laser pulse. Due to inertial effects, even for such small-sized clusters, the observed optimum pulse duration is in the order of 1 ps which is in good agreement with our theoretical results. Received 18 March 2002 Published online 19 July 2002  相似文献   

17.
Angular distributions for the elastic scattering of deuterons by 14C were measured at nine energies between Ed = 4.2 and 10 MeV. Excitation functions were taken in 50 keV steps from Ed = 4 to 10 MeV. A resonance was observed at Ed = 4.5 MeV, which corresponds to an excitation energy of 14.41 MeV in 16N. An analysis using an optical model plus a single-level formula derived from the R-matrix formalism yields an l-value assignment of l = 4 for this resonance. Of the three Jπ values allowed for l = 4 (Jπ = 3+, 4+, 5+), the value of Jπ = 3+ is found to be slightly preferred. Possible identification of this resonance with an analog in 16O is discussed. The angular distributions measured at off-resonance energies were analyzed with an optical-model potential which has a surface-peaked imaginary well. The energy dependence of the real and imaginary well depths are explicitly determined in the present work for Ed = 4 to 10 MeV. The best-fit optical-model parameters obtained from the present study are compared to those from the 14N(d, d)14N work.  相似文献   

18.
The possibility to construct intercluster interaction potentials in continuous and discrete spectra is shown in one‐channel cluster model based on the classification of orbital states according to Young schemes. These potentials usually contain Pauli forbidden states, and correctly describe elastic scattering phase shifts taking into account resonance behavior and main characteristics of the bound states of nuclei in the considering cluster channel. The versions of intercluster interaction potentials describing the resonance nature of some phase shifts of the n7Li elastic scattering at low energies and the P2 ground state of 8Li in the n7Li cluster channel have been constructed for the demonstration of this approach. The possibility of describing the total cross sections of 7Li (n,γ)8Li within the energies from 5 meV (5 · 10‐3 eV) to 1 MeV, including resonance at 0.25 MeV, has been demonstrated for the potentials obtained in the potential cluster model with forbidden states.  相似文献   

19.
Motivated by the observation of energy- and momentum-correlatede + e ? pairs in heavy ion collisions, a search for resonances ine + e ? scattering at the corresponding energies has been made. Thee + e ? decay channel is analyzed in a time window from ~ 10?13 s to ~ 10?11 s with a set-up optimized for low-background detection of delayede + e ? decays. The two-photon decay channel of a hypothetical resonance is investigated by measuring the two-photon annihilation-in-flight excitation function. New upper limits for the partiale + e ? decay width Γee of a few meV are derived for total centre-of-mass energies √s between 1.78 and 1.92 MeV, taking into account the dilepton as well as the two-photon decay of a neutral resonance.  相似文献   

20.
A time-of-flight system has been installed for the measurement of accelerator beam energies with an absolute accuracy of 1.5 : 105 as proved by determining excitation energies in 60Ni. The first T=32 resonance in 12C(p,p)12C was measured at Ep=14230.75±0. 20 keV.  相似文献   

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