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1.
M x-ray —L x-ray coincidence measurements with high resolution, cooled Si(Li) x-ray detectors were made on transitions following the alpha decays of228Th,232U,238Pu, and244Cm, in order to determine the meanM-subshell fluorescence yields. The values obtained are:v 4 M =0.032±0.002, andv 5 M =0.024±0.002 atZ=88;v 1 M =0.038±0.003,v 4 M =0.042±0.002, andv 5 M =0.038±0.002 atZ=90;v 1 M =0.047±0.002,v 4 M =0.048±0.002, andv 5 M =0.044±0.002 atZ=92;v 1 M =0.066±0.002,v 4 M =0.062±0.002, andv 5 M =0.063±0.002 atZ=94. The quantityΩ 1 M +f 12 2 M was measured as (56±10)×10?4, (62±12)×10?4, (99±18) ×10?4, and (93±15)×10?4 forZ=88, 90, 92, and 94, respectively, which agree well with the calculations of McGuire. The radiativeL 1-L 3 transition intensity was measured for the four atomic numbers and found to be consistently less than the calculations of Scofield by about 45 percent.  相似文献   

2.
The relationship between the \(\overline {MS} \) and on-shell renormalization schemes is discussed and the correction, for finite top quark mass, to the formula connecting sin2 θ W =1?M W 2 /M Z 2 and sin2 \(\widehat\theta _W (M_W )\) is given. A table is presented to allow easy conversion. The relative sensitivity, to the top quark and Higgs masses, of the two definitions, when extracted from semi-leptonic neutrino scattering experiments is considered.  相似文献   

3.
LEP measurements of theZ 0 parameters have been used to estimate the value of QED coupling constant at theZ 0 mass. The estimated value α eff -1 (M Z )=128.2±0.9 -0.4 +0.0 (M top) is in good agreement with the expectation of 128.0 ?0.4 +0.2 from the Standard Model.  相似文献   

4.
5.
In composite models of quarks, leptons and weak bosons whereW-constituents are colored objects, color octet partners ofW ± andZ 0 are predicted. We study in detail the phenomenology of these particles. Independent of the specific model one expects a color octet isotriplet of vector bosons (W 8 ± ,Z 8 0 ) with mass in the range of 100–200 GeV, and a color octet isosinglet vector bosonV 8 0 with substantially larger mass, due to mixing with the gluon. Moreover, relatively light color octet excitations of the leptons appear, while the existence of “color exotic” partners of the quarks is model dependent. These particles decay mainly into a lepton (quark) and a gluon. We construct the couplings ofW 8 ± ,Z 8 0 andV 8 0 to ordinary and “color exotic” fermions. The signals of color octet weak bosons in low energy weak reactions are explored in detail. The production cross section ofW 8 ± (Z 8 0 ) in hadron-hadron collisions is calculated for \(0.54TeV \leqq \sqrt s \leqq 20TeV\) . Various decay modes of colored weak bosons are studied. The most prominent decay signatures ofW 8 ± andZ 8 0 are events of the type (l +-: charged lepton;j: hadronic jet; : missing transverse momentum). The present CERN \(p\bar p\) collider data on such events are discussed in the light ofW 8 ± andZ 8 0 decays. If colored weak bosons are not found with a mass less than ~250 GeV composite model building will be strongly restricted.  相似文献   

6.
The pulsed electron electron double resonance (PELDOR) pulse sequence is applied to a three-spin system consisting of three radicals (Y D · , Y Z · and Q A ? ) generated in spinach PS II. The distance between YZ and QA has been determined to be 3.4 nm with the previously derived distances of the other radical pairs, 2.9 nm for Y D · -Y Z · and 3.9 nm for Y D · -Q A ? . This distance has been derived from the Y Z · -Q A ? radical pair trapped in YD-less mutants ofChlamydomonas reinhardtii. Furthermore the method was applied to the Y D · -Q A ? -Chl Z + system to find the unknown distance between QA and ChlZ. The derived distance was 3.4 nm. A triangular configuration was found in the membrane system that gives the relative positions of the electron transfer components.  相似文献   

7.
The Cabibbo angle is introduced as a mixing angle of the gauge bosonsW ± andX ± in anO(4)?U(1) gauge model. Masses of gauge bosons are calculated to beM W=82 (input), \(M_z = \sqrt 2 M_W s\gamma = 130\) (γ is mixing angle, sin2 γ=0.21),M x=666, andM Y=660, in units GeV. TheW μ ± andZ μ 0 couple to the familiar charged and neutral currents, respectively. The effective neutrino oscillation angle is found to be the Cabibbo angle.  相似文献   

8.
It was shown that optical bleaching of M A + color centers at 80 K in SrF2-Na crystals causes the core of an M A + -center to transform into the V a + Me + V a + configuration, in which all three point defects are arranged diagnonally in the cube cell. Reirradiation of an optically bleached crystal by x-rays generates F D centers in it: V a + Me + V a + + e ?V a 0 Me + V a + F D. The F DM A + transformation in SrF2-Na crystals proceeds at T = 135 K, in contrast to the F AM A + transformations, which take place at T > 200 K.  相似文献   

9.
The new experiment planned at Brookhaven to measure the anomalous magnetic moment of the muona μ≡(g μ?2)/2 will improve the present accuracy of 7 ppm by about a factor of 20. This requires a careful reconsideration of the theoretical uncertainties of theg?2 predictions, which are dominated by the error of the contribution from the light quarks to the photon vacuum polarization. This issue is cruicial also for the precise determination of the running fine structure constant at theZ-peak as LEP/SLC experiments continue to increase their precision. In this paper we present an updated analysis of the hadronic vacuum polarization using all presently availablee +e? data. This seems to be justified because previous work on the subject was based to some extent on preliminary or incomplete experimental data. Contributions from different energy ranges are presented separately forg?2 of the muon and the τ-lepton and for α(M Z 2 ). We obtain the resultsa μ had* =(725±16)×10?10 anda τ had* =(351±10)×10?8, where the asterisk indicates the dressed (renormalization group improved) value. For the effective fine structure constant atM Z=91.1888 GeV we obtainΔα had (5) =0.0280±0.0007 and α(M Z 2 )?1=128.896±0.090. Further improvement in the accuracy of theoretical predictions which depend on the hadronic vacuum polarization requires more precise measurements ofe +e? cross-sections at energies below about 12 GeV in future experiments.  相似文献   

10.
It may appear that the recently found resonance at 125 GeV is not the only Higgs boson. We point out the possibility that the Higgs bosons appear in models of top-quark condensation, where the masses of the bosonic excitations are related to the top quark mass by the sum rule similar to the Nambu sum rule of the NJL models [1]. This rule was originally considered by Nambu for superfluid 3He-B and for the BCS model of superconductivity. It relates the two masses of bosonic excitations existing in each channel of Cooper pairing to the fermion mass. An example of the Nambu partners is provided by the amplitude and the phase modes in the BCS model describing Cooper pairing in the s-wave channel. This sum rule suggests the existence of the Nambu partners for the 125 GeV Higgs boson. Their masses can be predicted by the Nambu sum rule under certain circumstances. For example, if there are only two states in the given channel, the mass of the Nambu partner is ~ 325 GeV. They together satisfy the Nambu sum rule M 1 2 + M 2 2 = 4M t 2 , where M t ~ 174 GeV is the mass of the top quark. If there are two doubly degenerated states, then the second mass is ~210 GeV. In this case the Nambu sum rule is 2M 1 2 + 2M 2 2 = 4M t 2 . In addition, the properties of the Higgs modes in superfluid 3He-A, where the symmetry breaking is similar to that of the Standard Model of particle physics, suggest the existence of two electrically charged Higgs particles with masses around 245 GeV, which together also obey the Nambu sum rule M + 2 + M ? 2 = 4M t 2 .  相似文献   

11.
We point out properties of the “perpendicularev mass”, defined in terms of transverse momentap t byM T 2 (ev)=2|p eT | |p vT |?2p eT ·p vT , that make it particularly well suited toW mass and width determinations. We give an analytic expression for its distribution inW production and subsequentWev decay a \(\bar pp\) colliders, accurate to order 〈p WT 2 /M W 2 〉≈1%. A maximum likelihood fit of this formula to the five UA1 events givesM W=80.3 ?3 +6 GeV.  相似文献   

12.
We study possible deviations from the Standard Model in the reactionγeZe at a 500 GeVe + e ? collider. As a photon source we use a laser backscattered photon beam. We investigate the most generalγZγ andγZZ vertices including operators up to energy-dimension-six which are Lorentz invariant. These vertices require four extra parameters; two are CP-conserving,h 1 γ andh 1 Z , and two are CP-violating,h 2 γ andh 2 Z . We present analytical expressions of the helicity amplitudes for the processγeZe for arbitrary values of anomalous couplings. Assuming Standard Model values are actually measured we present the allowed region in the (h 1 γ ,h 1 Z ) plane at the 90% confidence level. We then show how the angular correlation of theZ decay products can be used to extract detailed information on the anomalous (especially CP-violating)γZγ andγZZ couplings.  相似文献   

13.
The lifetime of the 331.3 keV 0 2 + state in100Zr has been measured at the gas-filled recoil separator for fission products JOSEF. By observing the delayed coincidences between theβ-particles populating the level and theE0 conversion electrons from its decay into the ground state, a half-life of 3.37±0.30 ns has been obtained. From the measured lifetime and the relative intensities of the 0 2 + →0 1 + and 0 2 + →2 1 + transitions, values of 0.493±0.015 for theE0 strength parameterρ, and of 16 single particle units forB(E2,2 1 + → 0 2 + ) have been deduced. The enhanced nature of theE0 transitions suggests mixing of the 0 1 + and 0 2 + states which may be estimated by comparing the experimentalB(E2) values for the 2 1 + →0 1 + and 2 1 + →0 2 + transitions with the predictions of the asymmetric VMI model.  相似文献   

14.
Consider the 1/2-Ising model inZ 2. Let σ j be the spin at the site (j, 0)∈Z 2 (j=0, ±1, ±2, ...). Let \(\{ X_n \} _{n = 0}^{ + \infty } \) be a random walk with the random transition probabilities such that $$P(X_{n + 1} = j \pm 1|X_n = j) = p_j^ \pm \equiv 1/2 \pm v(\sigma _j - \mu )/2$$ We show a case whereE[p j + E[p j ? ], but \(\mathop {\lim }\limits_{n \to \infty } X_n = - \infty \) is recurrent a.s.  相似文献   

15.
We study the effect of vector and axial isovector mesons in the soliton of the SU(2) NJL-model for static hedgehog configurations and on the chiral circle. The Lagrangian reproduces Sakurai's Universality and implements vector dominance through current-field identities. The parameters of the Lagrangian are fixed by means of a heat-kernel expansion up to second order taking theA-π mixing into account. For the corresponding set of parameters we find solitons for constituent quark masses betweenM~265–345 MeV which are much lower than those found without vector mesons. For the valueM=315 MeV which corresponds both to the KSFR relation 2g ρ 2 f π 2 =m ρ 2 and the Weinberg sum rule m A 2 =m ρ 2 the soliton has a clearly negative quark eigenvalue. The soliton mass is about 1100 MeV. For this choise of parameters the radius and axial coupling constant turn out to be too small.  相似文献   

16.
In this paper the theoretical parameters of theZ line shape, such asM Z andΓ Z, and the one photon exchange diagram are related to a set of parameters characterizing the experimental line shape. The latter are the peak height σmax, peak position \(\sqrt {s_{\max } } \) and half peak positions \(\sqrt {s_ \pm } \) . The rules of thumb are accurate within 10 MeV. As a result we obtain approximate formulae which expressM Z and ΓZ in the measured \(\sqrt {s_{\max } } \) and \(\sqrt {s_ + } - \sqrt {s_ - } \) .  相似文献   

17.
Using the204Hg(α, pn)-reaction andα-particles of energies 39–55 MeV, we have found an isomeric 3.6 min 12? state in206Tl at 2,642.9 keV which has the two-hole configurationπh 11 2/?1 vi 13 2/?1 The 12? state decays mainly by anE5 transition of energy 1,021.4 keV to a 7+ state at 1,621.5 keV whose main configuration isπs 1 2/?1 vi 13 2/?1 There is, in addition, evidence for a weak 565 keVM 4 branch to an 8+ state at 2,078 keV whose main configuration should beπh 11 2/?1 vf 5 2/?1 . The 7+ state decays by a stretched cascade ofγ-rays to states of the following values ofJ π and excitation energy: 5 ? + , 1,405.4 keV; 4?, 952.1 keV; 2?, 265.8 keV and 0?, 0 keV. The main configurations of these states areπh 11 2/?1 vp 1 2/?1 ,πd 3 2/?1 vf 5 2/?1 ,πd 3 2/?1 vp 1 2/?1 andπs 1 2/?1 vp 1 2/?1 respectively. From the nuclear masses of208Pb,207Pb,207Tl, and206Tl and the experimental excitation energies it is possible to obtain the proton hole-neutron hole interaction in206Tl. This interaction is compared with the calculations of Kuo and Herling and the discrepancies are discussed. The 12?→8+ M4 transition rate is reduced because of destructive interference between the protonh 11/2d 3/2 and the neutroni 13/2f 5/2 contributions. The magnitude of the reduction is accurately reproduced by the wave functions of Kuo and Herling. The 12?→7+ E5 transition rate is about twice as large as the single-holeπh 11 2/?1 πs 1 2/?1 transition rate. This deviation is fully explained by the configuration admixtures in the 7+ state, given by Kuo and Herling.  相似文献   

18.
The nonadiabaticity of E0 transitions from 0 2 + states and 2 1 + bands in 156Dy is examined within a phenomenological model that takes into account the mixing of K π = 0 1 + , 0 2 + , 0 3 + , 2 1 + states and 1+-bands. It is shown that the nonadiabaticity of E0 transitions is due primarily to the mixing of 0 2 + and 0 3 + bands.  相似文献   

19.
Coulomb excitation byα-particles of vibrational-like states in even-mass rare-earth nuclei is used to determine the reduced transition probabilitiesB(E2; 0 gs + →2 γ + ),B(E2; 0 gs + →2 β + ),B(E2; 2 gs + →0 β + ) andB(E2; 0 gs + →3 oct ? ) in150Nd,152, 154Sm,154, 158Gd,164Dy and166Er. TheB(Eλ; 0 gs + I=λ)-values range from 2.4 to 6.5 single-particle units for transitions to the 2 γ + -states, 0.8 single-particle units for the 2 β + -states and from 14.1 to 21.7 single-particle units for the 3?-states.  相似文献   

20.
The angular distributions of high-mass dileptons with large transverse momentum produced in longitudinally polarized hadronic collisions, hadron +hadron→(γ*,Z 1 0 ,Z 2 0 , ...)+Xl + l ?+X, are calculated in the QCD lowest order. The formulas presented in general form, are applicable to any gauge model of underlying electroweak interactions. Numerical results are obtained for the angular distributions in \(\bar p\) p-collisions at \(\sqrt s = 540GeV\) for the Weinberg-Salam,SU(2)×U(1)×U(1)′ andSU(2)×SU(2)′×U(1) models. Clearly distinguishable signals are revealed.  相似文献   

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