426 research outputs found

    Effect of Cyclic Stresses below the Endurance Limit on the Fatigue Life of 40Cr Steel

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    The effect of cyclic stresses below the endurance limit on the fatigue life of 40Cr medium-strength carbon steel is studied. Conventional constant-amplitude cyclic tests and specially designed variableamplitude ones are conducted under torsional loading at the stress ratio R = 0.1. The results show that the strengthening effect of cyclic stresses below the endurance limit can be reached if they are applied prior to the exceeding ones. Moreover, the stress amplitude, number of cycles and load sequence are found to be the three major strengthening effect-controlling factors.Π˜Π·ΡƒΡ‡Π΅Π½ΠΎ влияниС цикличСских напряТСний Π½ΠΈΠΆΠ΅ ΠΏΡ€Π΅Π΄Π΅Π»Π° выносливости Π½Π° ΡƒΡΡ‚Π°Π»ΠΎΡΡ‚Π½ΡƒΡŽ Π΄ΠΎΠ»Π³ΠΎΠ²Π΅Ρ‡Π½ΠΎΡΡ‚ΡŒ углСродистой стали срСднСй прочности 40Cr. Π’Ρ‹ΠΏΠΎΠ»Π½Π΅Π½Ρ‹ стандартныС цикличСскиС испытания с постоянной Π°ΠΌΠΏΠ»ΠΈΡ‚ΡƒΠ΄ΠΎΠΉ ΠΈ ΡΠΏΠ΅Ρ†ΠΈΠ°Π»ΡŒΠ½ΠΎ Ρ€Π°Π·Ρ€Π°Π±ΠΎΡ‚Π°Π½Π½ΠΎΠ΅ испытаниС с ΠΏΠ΅Ρ€Π΅ΠΌΠ΅Π½Π½ΠΎΠΉ Π°ΠΌΠΏΠ»ΠΈΡ‚ΡƒΠ΄ΠΎΠΉ ΠΏΡ€ΠΈ крутящСм усилии ΠΈ коэффициСнтС асиммСтрии R = 0,1. Показано, Ρ‡Ρ‚ΠΎ эффСкт упрочнСния ΠΎΡ‚ цикличСских напряТСний Π½ΠΈΠΆΠ΅ ΠΏΡ€Π΅Π΄Π΅Π»Π° выносливости достигаСтся ΠΏΡ€ΠΈ ΠΈΡ… ΠΏΡ€ΠΈΠ»ΠΎΠΆΠ΅Π½ΠΈΠΈ Π΄ΠΎ напряТСний, ΠΏΡ€Π΅Π²Ρ‹ΡˆΠ°ΡŽΡ‰ΠΈΡ… этот ΠΏΡ€Π΅Π΄Π΅Π». УстановлСно, Ρ‡Ρ‚ΠΎ Π°ΠΌΠΏΠ»ΠΈΡ‚ΡƒΠ΄Π° напряТСний, число Ρ†ΠΈΠΊΠ»ΠΎΠ² ΠΈ схСма нагруТСния ΡΠ²Π»ΡΡŽΡ‚ΡΡ трСмя основными Ρ„Π°ΠΊΡ‚ΠΎΡ€Π°ΠΌΠΈ, ΠΊΠΎΠ½Ρ‚Ρ€ΠΎΠ»ΠΈΡ€ΡƒΡŽΡ‰ΠΈΠΌΠΈ эффСкт упрочнСния

    Time-Dependent Spintronic Transport and Current-Induced Spin Transfer Torque in Magnetic Tunnel Junctions

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    The responses of the electrical current and the current-induced spin transfer torque (CISTT) to an ac bias in addition to a dc bias in a magnetic tunnel junction are investigated by means of the time-dependent nonquilibrium Green function technique. The time-averaged current (time-averaged CISTT) is formulated in the form of a summation of dc current (dc CISTT) multiplied by products of Bessel functions with the energy levels shifted by mℏω0m\hbar \omega _{0}. The tunneling current can be viewed as to happen between the photonic sidebands of the two ferromagnets. The electrons can pass through the barrier easily under high frequencies but difficultly under low frequencies. The tunnel magnetoresistance almost does not vary with an ac field. It is found that the spin transfer torque, still being proportional to the electrical current under an ac bias, can be changed by varying frequency. Low frequencies could yield a rapid decrease of the spin transfer torque, while a large ac signal leads to both decrease of the electrical current and the spin torque. If only an ac bias is present, the spin transfer torque is sharply enhanced at the particular amplitude and frequency of the ac bias. A nearly linear relation between such an amplitude and frequency is observed.Comment: 13 pages,8 figure

    Final State Interactions in D0β†’K0K0Λ‰D^0 \to K^0 \bar{K^0}

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    It is believed that the production rate of D0β†’K0KΛ‰0D^0\to K^0\bar K^0 is almost solely determined by final state interactions (FSI) and hence provides an ideal place to test FSI models. Here we examine model calculations of the contributions from s-channel resonance fJ(1710)f_J(1710) and t-channel exchange to the FSI effects in D0β†’K0KΛ‰0D^0\to K^0\bar K^0. The contribution from s-channel f0(1710)f_0(1710) is smaForthetβˆ’channelFSIevaluation,weemploytheoneβˆ’particleβˆ’exchange(OPE)modelandReggemodelrespecti For the t-channel FSI evaluation, we employ the one-particle-exchange (OPE) model and Regge model respecti The results from two methods are roughly consistent with each other and can reproduce the large rate of D0β†’K0KΛ‰0D^0\to K^0\bar K^0 reasonably well$Comment: Latex, 16 pages, with 2 figure

    Probing unparticle theory via lepton flavor violating process J/Οˆβ†’llβ€²J/\psi\to ll' at BESIII

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    The lepton flavor violating process J/Οˆβ†’llβ€²(lβ‰ lβ€²)J/\psi\to ll' (l\neq l') serves as an ideal place to probe the unparticle theory. Such process can only occur at loop level in the Standard model (SM), so that should be very suppressed, by contrast in unparticle scenario, it happens at tree level and its contribution may be sizable for practical measurement. Moreover, the BESIII will offer the largest database on J/ψJ/\psi which makes more accurate measurements possible. Furthermore, for such purely leptonic decays background is relatively low and signal would be cleaner. Our work carefully investigates the possibility of observing such processes from both theoretical and experimental aspects.Comment: 11 pages, 2 figures, revised version for publicatio

    \psi(2S) Decays into \J plus Two Photons

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    Using \gamma \gamma J/\psi, J/\psi \ra e^+ e^- and ΞΌ+ΞΌβˆ’\mu^+ \mu^- events from a sample of 14.0Γ—10614.0\times 10^6 \psip decays collected with the BESII detector, the branching fractions for \psip\ra \pi^0\J, \eta\J, and \psi(2S)\ar\gamma\chi_{c1},\gamma\chi_{c2}\ar\gamma\gamma\jpsi are measured to be B(\psip\ra \pi^0\J) = (1.43\pm0.14\pm0.13)\times 10^{-3}, B(\psip\ra \eta\J) = (2.98\pm0.09\pm0.23)%, B(\psi(2S)\ar\gamma\chi_{c1}\ar\gamma\gamma\jpsi) = (2.81\pm0.05\pm 0.23)%, and B(\psi(2S)\ar\gamma\chi_{c2}\ar\gamma\gamma\jpsi) = (1.62\pm0.04\pm 0.12)%.Comment: 7 pages, 6 figures. submitted to Phys. Rev.

    Direct Measurements of the Branching Fractions for D0β†’Kβˆ’e+Ξ½eD^0 \to K^-e^+\nu_e and D0β†’Ο€βˆ’e+Ξ½eD^0 \to \pi^-e^+\nu_e and Determinations of the Form Factors f+K(0)f_{+}^{K}(0) and f+Ο€(0)f^{\pi}_{+}(0)

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    The absolute branching fractions for the decays D0β†’Kβˆ’e+Ξ½eD^0 \to K^-e ^+\nu_e and D0β†’Ο€βˆ’e+Ξ½eD^0 \to \pi^-e^+\nu_e are determined using 7584Β±198Β±3417584\pm 198 \pm 341 singly tagged DΛ‰0\bar D^0 sample from the data collected around 3.773 GeV with the BES-II detector at the BEPC. In the system recoiling against the singly tagged DΛ‰0\bar D^0 meson, 104.0Β±10.9104.0\pm 10.9 events for D0β†’Kβˆ’e+Ξ½eD^0 \to K^-e ^+\nu_e and 9.0Β±3.69.0 \pm 3.6 events for D0β†’Ο€βˆ’e+Ξ½eD^0 \to \pi^-e^+\nu_e decays are observed. Those yield the absolute branching fractions to be BF(D0β†’Kβˆ’e+Ξ½e)=(3.82Β±0.40Β±0.27)BF(D^0 \to K^-e^+\nu_e)=(3.82 \pm 0.40\pm 0.27)% and BF(D0β†’Ο€βˆ’e+Ξ½e)=(0.33Β±0.13Β±0.03)BF(D^0 \to \pi^-e^+\nu_e)=(0.33 \pm 0.13\pm 0.03)%. The vector form factors are determined to be ∣f+K(0)∣=0.78Β±0.04Β±0.03|f^K_+(0)| = 0.78 \pm 0.04 \pm 0.03 and ∣f+Ο€(0)∣=0.73Β±0.14Β±0.06|f^{\pi}_+(0)| = 0.73 \pm 0.14 \pm 0.06. The ratio of the two form factors is measured to be ∣f+Ο€(0)/f+K(0)∣=0.93Β±0.19Β±0.07|f^{\pi}_+(0)/f^K_+(0)|= 0.93 \pm 0.19 \pm 0.07.Comment: 6 pages, 5 figure

    The Οƒ\sigma pole in J/Οˆβ†’Ο‰Ο€+Ο€βˆ’J/\psi \to \omega \pi^+ \pi^-

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    Using a sample of 58 million J/ψJ/\psi events recorded in the BESII detector, the decay J/Οˆβ†’Ο‰Ο€+Ο€βˆ’J/\psi \to \omega \pi^+ \pi^- is studied. There are conspicuous Ο‰f2(1270)\omega f_2(1270) and b1(1235)Ο€b_1(1235)\pi signals. At low ππ\pi \pi mass, a large broad peak due to the Οƒ\sigma is observed, and its pole position is determined to be (541Β±39)(541 \pm 39) - ii (252Β±42)(252 \pm 42) MeV from the mean of six analyses. The errors are dominated by the systematic errors.Comment: 15 pages, 6 figures, submitted to PL

    Measurements of J/psi Decays into 2(pi+pi-)eta and 3(pi+pi-)eta

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    Based on a sample of 5.8X 10^7 J/psi events taken with the BESII detector, the branching fractions of J/psi--> 2(pi+pi-)eta and J/psi-->3(pi+pi-)eta are measured for the first time to be (2.26+-0.08+-0.27)X10^{-3} and (7.24+-0.96+-1.11)X10^{-4}, respectively.Comment: 11 pages, 6 figure

    A study of charged kappa in J/Οˆβ†’KΒ±KsΟ€βˆ“Ο€0J/\psi \to K^{\pm} K_s \pi^{\mp} \pi^0

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    Based on 58Γ—10658 \times 10^6 J/ψJ/\psi events collected by BESII, the decay J/Οˆβ†’KΒ±KsΟ€βˆ“Ο€0J/\psi \to K^{\pm} K_s \pi^{\mp} \pi^0 is studied. In the invariant mass spectrum recoiling against the charged Kβˆ—(892)Β±K^*(892)^{\pm}, the charged ΞΊ\kappa particle is found as a low mass enhancement. If a Breit-Wigner function of constant width is used to parameterize the kappa, its pole locates at (849Β±77βˆ’14+18)βˆ’i(256Β±40βˆ’22+46)(849 \pm 77 ^{+18}_{-14}) -i (256 \pm 40 ^{+46}_{-22}) MeV/c2c^2. Also in this channel, the decay J/Οˆβ†’Kβˆ—(892)+Kβˆ—(892)βˆ’J/\psi \to K^*(892)^+ K^*(892)^- is observed for the first time. Its branching ratio is (1.00Β±0.19βˆ’0.32+0.11)Γ—10βˆ’3(1.00 \pm 0.19 ^{+0.11}_{-0.32}) \times 10^{-3}.Comment: 14 pages, 4 figure
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