994 resultados para Nature observation


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A new band in the odd proton nucleus I-123 is identified via in- beam gamma- ray spectroscopy using the N-14+Cd-116 reaction. This band shows up as doublets with the previously assigned pi g(7/2) circle times (nu h(11/2))(2) band. Possible configurations of the new band are discussed in the framework of the cranked shell model and the geometrical model. It is argued that the new band might be a chiral partner of the previously known pi g(7/2) circle times (nu h(11/2))(2) band.

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Motivated by recent experimental observation of spin-orbit coupling in carbon nanotube quantum dots [F. Kuemmeth , Nature (London) 452, 448 (2008)], we investigate in detail its influence on the Kondo effect. The spin-orbit coupling intrinsically lifts out the fourfold degeneracy of a single electron in the dot, thereby breaking the SU(4) symmetry and splitting the Kondo resonance even at zero magnetic field. When the field is applied, the Kondo resonance further splits and exhibits fine multipeak structures resulting from the interplay of spin-orbit coupling and the Zeeman effect. A microscopic cotunneling process for each peak can be uniquely identified. Finally, a purely orbital Kondo effect in the two-electron regime is also predicted.

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The nucleus Cs-126 was investigated by means of in-beam gamma-ray spectroscopy techniques using the Nordball detector system at the Niels Bohr Institute. Excited states of Cs-126 were populated via the Cd-116(N-14, 4n)Cs-126 reaction at a beam energy of 65 MeV. The Cs-126 level scheme was considerably extended, especially at negative parity and about 40 new levels and 70 new transitions were added into the level scheme. The previously reported negative-parity rotational bands, built on pi g(7/2)circle times nu h(11/2),pi d(5/2)circle times nu h(11/2),pi h(11/2)circle times nu g(7/2), and pi h(11/2)circle times nu d(5/2) configurations, have been extended and evolve into bands involving rotationally aligned (pi h(11/2))(2) and (nu h(11/2))(2) quasiparticles. Two new rotational bands have been tentatively assigned the pi h(11/2)circle times nu s(1/2) and pi g(9/2)circle times nu h(11/2) configurations, respectively

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The high-spin states in Pt-187 have been studied experimentally by means of in-beam gamma-ray spectroscopy techniques via the Yb-173(O-18, 4n) fusion-evaporation reaction. The high-spin level scheme of Pt-187 has been established, including three rotational bands. Based on the systematics of level structure in neighboring nuclei and by comparing the experimental and theoretical B(M1)/B(E2) ratios, configurations of 11/2+ [615], 7/2(-)[5031 and 1/2(-)[521] have been proposed for the three rotational bands, respectively. Band properties of band crossing frequency, alignment gain and signature splitting have been discussed.

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Excited states in Tl-188 have been studied experimentally using the Gd-157(Cl-35;4n) reaction at a beam energy of 170 MeV. A rotational band built on the pi h(9/2) x nu i(13/2) configuration with oblate deformation has been established for Tl-188. Based on the structure systematics of the oblate pi h(9/2) x nu i(13/2) bands in the heavier odd-odd Tl nuclei, we have tentatively proposed spin values for the new band in Tl-188. The pi h(9/2) x nu i(13/2) oblate band in Tl-188 shows low-spin signature inversion, and it can be interpreted qualitatively by the two-quasiparticle plus rotor model including a J-dependent p-n residual interaction.

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The deformed doubly magic nucleus (270)Hs has so far only been observed as the four-neutron (4n) evaporation residue of the reaction Mg-26+Cm-248, where a maximum cross section of 3 pb was measured. Theoretical studies on the formation of (270)Hs in the 4n evaporation channel of fusion reactions with different entrance channel asymmetry in the framework of a two-parameter Smoluchowski equation predict that the reactions Ca-48+Ra-226 and S-36+U-238 result in higher cross sections due to lower reaction Q values, in contrast to simple arguments based on the reaction asymmetry, which predict opposite trends. Calculations using HIVAP predict cross sections for the reaction S-36+U-238 that are similar to those of the Mg-26+Cm-248 reaction. Here, we report on the first measurement of evaporation residues formed in the complete nuclear fusion reaction S-36+U-238 and the observation of (270)Hs, which is produced in the 4n evaporation channel, with a measured cross section of 0.8(-0.7)(+2.6) pb at 51-MeV excitation energy. The one-event cross-section limits (68% confidence level) for the 3n, 4n, and 5n evaporation channels at 39-MeV excitation energy are 2.9 pb, while the cross-section limits of the 3n and 5n channel at 51 MeV are 1.5 pb. This is significantly lower than the 5n cross section of the Mg-26+Cm-248 reaction at similar excitation energy.

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Parity (P)-odd domains, corresponding to nontrivial topological solutions of the QCD vacuum, might be created during relativistic heavy-ion collisions. These domains are predicted to lead to charge separation of quarks along the orbital momentum of the system created in noncentral collisions. To study this effect, we investigate a three-particle mixed-harmonics azimuthal correlator which is a P-even observable, but directly sensitive to the charge-separation effect. We report measurements of this observable using the STAR detector in Au + Au and Cu + Cu collisions at root s(NN) = 200 and 62 GeV. The results are presented as a function of collision centrality, particle separation in rapidity, and particle transverse momentum. A signal consistent with several of the theoretical expectations is detected in all four data sets. We compare our results to the predictions of existing event generators and discuss in detail possible contributions from other effects that are not related to P violation.

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We present a measurement of pi(+)pi(-)pi(+)pi(-) photonuclear production in ultraperipheral Au-Au collisions at root s(NN) = 200 GeV from the STAR experiment. The pi(+)pi(-)pi(+)pi(-) final states are observed at low transverse momentum and are accompanied by mutual nuclear excitation of the beam particles. The strong enhancement of the production cross section at low transverse momentum is consistent with coherent photoproduction. The pi(+)pi(-)pi(+)pi(-) invariant mass spectrum of the coherent events exhibits a broad peak around 1540 +/- 40 MeV/c(2) with a width of 570 +/- 60 MeV/c(2), in agreement with the photoproduction data for the rho(0)(1700). We do not observe a corresponding peak in the pi(+)pi(-) final state and measure an upper limit for the ratio of the branching fractions of the rho(0)(1700) to pi(+)pi(-) and pi(+)pi(-)pi(+)pi(-) of 2.5% at 90% confidence level. The ratio of rho(0)(1700) and rho(0)(770) coherent production cross sections is measured to be 13.4 +/- 0.8(stat.) +/- 4.4(syst.)%.

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Nuclear collisions recreate conditions in the universe microseconds after the Big Bang. Only a very small fraction of the emitted fragments are light nuclei, but these states are of fundamental interest. We report the observation of antihypertritons-comprising an antiproton, an antineutron, and an antilambda hyperon-produced by colliding gold nuclei at high energy. Our analysis yields 70 +/- 17 antihypertritons (3/Lambda(H) over bar) and 157 +/- 30 hypertritons (H-3(Lambda)). The measured yields of H-3(Lambda) (3/Lambda(H) over bar) and He-3 ((3)(He) over bar) are similar, suggesting an equilibrium in coordinate and momentum space populations of up, down, and strange quarks and antiquarks, unlike the pattern observed at lower collision energies. The production and properties of antinuclei, and of nuclei containing strange quarks, have implications spanning nuclear and particle physics, astrophysics, and cosmology.

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The neutron deficient nuclide Ir-175 was produced by irradiation of Nd-146 with 210 MeV Cl-35 via a fusion-evaporation reaction channel. The reaction products were transported to a low-background location using a helium-jet recoil fast-moving tape-transport system for measurement. The experimental devices and data analysis method are introduced. Based on the decay-curve fitting of the beta-delayed gamma ray from Ir-175, realized by the least-square method, a new long-lived isomeric state of Ir-175 is proposed and briefly discussed.

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通过重离子核反应116Cd(27Al,4n)与在束γ谱的实验技术,对A=130~140核区的奇A核139Pm的高自旋态进行了研究.根据γ-γ符合关系、γ射线的相对强度和各向异性度的测量结果,扩展并更新了139Pm的能级纲图.实验观测到基于πh11/2和πg7/2-[πh11/2]2(或者πd5/2-[πh11/2]2)组态的转动带,利用已有的理论计算结果对这些转动带进行了解释.同时还观测到三个具有很强M1跃迁、旋称劈裂很小的-I=1的带.通过简单分析和系统学比较,指认了它们的组态,发现它们具备磁转动带的特性,很可能是磁转动带.

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本论文以A~160区奇奇核的高自旋态核结构为研究对象,详细地总结分析了该区奇奇核[h11/2]p[i13/2]n带的性质,利用在束核谱学实验手段布居和测量了166Ta核高自旋态能级结构、借助模型理论对该核实验结果进行分析,还从理论方面系统地研究了A~160区奇奇核[h11/2]p[i13/2]n带的signature反转现象与形变的关系,取得了一些创新成果。 奇奇核高j组态带的signature反转现象系统地存在于A~160、A~130和A~80核区,目前理论上提出的各种可能机制还不能彻底解释清楚这一现象。本文中较详细地归纳了A~160区奇奇核signature反转带,即[h11/2]p[i13/2]n带,实验数据的一些系统学规律,具体贡献在于 1、总结了晕态[h11/2]p[i13/2]n带的跃迁能量系统学规律,指出存在这种规律的原因在于形变和价核子耦合性质随质子数和中子数增减的有规律变化。 2、展示了随质子数增大和中子数减小该带准粒子顺排角动量相加性逐渐变差的现象,指出这种变差的原因可能是形变减小导致剩余n-p相互作用的增强,以及奇奇核带和与之相比较的奇核带形变差异增大。文中强调了使用顺排角动量相加性规则时要考查相加前后两个signature分支顺排角动量的相对大小。跃迁能量系统学规律和顺排角动量相加性规则是目前指定该区奇奇核[h11/2]p[i13/2]n带核态自旋值的有效工具,上述工作有益于研究新核时正确运用这些工具。文中其它归纳和总结工作也为后续研究提供了较为系统的参考资料。 此前尚未有人对166Ta核做过在束研究,我们在中国原子能科学研究院利用HI-13串列加速器通过141Pr(28Si,3n)反应布居和测量了166Ta核高自旋态。实验中使用了5片厚500μg/cm2纯度98.0%的141Pr自衬靶,7台HpGe反康谱仪和1台平面型HpGe探测器。用改变束流能量测量在束单谱和剩余放射性的方法确认实验中生成了166Ta核并为符合实验选定了束流能量。γ-γ符合实验束流能量为127MeV,实验中共收集到约50×106个两重符合事件。实验后用152Eu放射源对探测系统进行了能量和效率刻度。符合实验数据被反演成γ-γ、X-γ和DCO二维谱。通过处理和分析实验数据,得到以下主要结果: 1、用TaKX射线开窗、比较不同束流能量下的在束单谱和排除已知核射线等方法确认了属于166Ta的射线,根据这些射线的级联关系首次建立起了166Ta核的在束能级纲图,其中包括4条转动带,60条射线。166Ta核的晕带是一条耦合性较强的带,建立起的该带能级纲图中包括16条能级和29条射线,每一signature分支有7条E2拉伸跃迁。另外三条带是两条耦合带和一条双退耦带。其中一条耦合带的耦合性较强、位置较高,可能是4准粒子带。 2、计算γ-γ符合矩阵和DCO矩阵开窗谱中峰下面积,得到了166Ta核55条射线在实验中的相对强度Iγ、29条射线的方向关联系数Iγ(35°)/Iγ(75°)和21个核态退激过程的跃迁强度分支比λ等数据。 3、借助模型计算,为实验中发现的4条转动带指定了组态。晕核组态定为9/2[514]p3/2[651]n, Kπ值为6-。另外两条耦合带的组态被定为9/2[514]p3/2[521]n和9/2[514]p3/2[521]n{3/2[651]n}2,退偶带的组态可能是1/2[514]p3/2[651]n。 4、通过分析跃迁能量系统学规律和运用顺排角动量相加性规则指定了166Ta核晕带核态的自旋值,还使用其它方法倾向性地指定了另外三条带的自旋值。 5、提取了一些核态退激过程B(M1)/B(E2)理论值比实验值偏大,指示该带可能存在负γ形变。另外两条耦合带的B(M1)/B(E2)计算值与实验值比较接近,这方面支持我们对其组态的指定。回弯之前的166Ta核晕带B(M1)/B(E2)值与已知的同位素和同中子素奇奇核晕带值相比大许多,我们认为这是组态和形变变化造成的。 6、166Ta和邻核晕带集体转动惯量随转动角频率平方的变化关系显示准质子占据h11/2子壳顶部轨道时顺排发生得较晚,准中子占据i13/2子壳低部轨道时顺排发生得较早。 7、实验结果显示166Ta核的晕带出现signature反转,signature反转点自旋值和反转点之下M1跃迁摆动幅度都与全区规律相符。 我们研究166Ta核的高自旋态能级结构旨在为研究奇奇核signature反转提供新的实验数据,实验研究达到了预期的目的,实验结果证实了在轻Ta奇奇核同位素中也系统地存在signature反转。 在讨论A~160区奇奇核[h11/2]p[i13/2]n带的signature反转机制方面,作者首次利用现有的TRS计算方法系统地考察了该区32个奇奇核该带形变极其随核子数增减的变化趋势,进而通过CSM计算考察了形变对该带signature劈裂的影响。这方面的研究成果主要包括: 1、计算结果显示,该区核芯较容易在γ形变方向受到价核子的形状极化作用,89≤Z≤95时i13/2准中子一般具有正γ形变驱动作用且随着中子数减小此正γ形变驱动作用逐渐增强,67≤Z≤75时h11/2准质子一般具有负γ形变驱动作用且随着质子数增大此负γ形变驱动作用逐渐增强,Z=63和65时h11/2准质子两个signature组态具有不同方向的γ形变驱动作用,总体看h11/2准质子的γ形变驱动作用没有i13/2准中子的强。 2、只考虑ε2和γ形变参量的TSR计算结果显示A~160区中N=89和91奇奇核的[h11/2]p[i13/2]n带有较大的正γ形变,N≥93奇奇核中该带γ形变则较小或为负γ形变。计算出的不同核该带的γ形变值随中子数增加逐渐减小、随质子数变化的规律较复杂且变化幅度没有随中子数变化时那么明显,Z≤67时一些核两signature的形变还有明显的差异。 3、CSM计算表明正γ形变可以导致费米面附近的h11/2准质子轨道signature反转,并且存在正γ形变时ε2形变、ε4形变、质子对力和质子数的不同都对signature反转幅度和反转点对应的角频率都有影响,[h11/2]p[i13/2]n带两个signature组态形变的不同对费米面附近i13/2准中子轨道的位置也有影响。 4、利用从TRS计算出的形变参量所做CSM计算显示,该区部分奇奇核[h11/2]p[i13/2]n带出现signature反转。计算出的signature反转随中子数或质子数变化趋势有些和实验结果相符,也有一些与实验结果不符,对有些实验上发现signature反转的核还计算不出反转。计算结果预言该区一些没有实验数据的奇奇核[h11/2]p[i13/2]n带中也会存在signature反转,这些核是154Eu、162Ta、164Ta和168Re等。 此前对解释A~160区奇奇核signature反转的系统规律时是否必须考虑γ形变还没有定论,本文工作证实了较明显的正γ形变对signature反转起着重要的作用。但是,单纯考虑γ形变并不能完全再现A~160区奇奇核signature反转规律,今后的研究工作还要系统而细致地考虑各方面因素。