111 resultados para Burrow fragments, pyritized


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Aims. We determine branching fractions, cross sections and thermal rate constants for the dissociative recombination of CD3CDOD+ and CH3CH2OH2+ at the low relative kinetic energies encountered in the interstellar medium. Methods. The experiments were carried out by merging an ion and electron beam at the heavy ion storage ring CRYRING, Stockholm, Sweden. Results. Break-up of the CCO structure into three heavy fragments is not found for either of the ions. Instead the CCO structure is retained in 23 +/- 3% of the DR reactions of CD3CDOD+ and 7 +/- 3% in the DR of CH3CH2OH2+, whereas rupture into two heavy fragments occurs in 77 +/- 3% and 93 +/- 3% of the DR events of the respective ions. The measured cross sections were fitted between 1-200 meV yielding the following thermal rate constants and cross-section dependencies on the relative kinetic energy: sigma(E-cm[eV]) = 1.7 +/- 0.3 x 10(-15)(Ecm[eV])(-1.23 +/- 0.02) cm(2) and k(T) = 1.9 +/- 0.4 x 10(-6)(T/300)-0.73 +/- 0.02 cm(3) s(-1) for CH3CH2OH2+ as well as k(T) = 1.1 +/- 0.4 x 10(-6)(T/300)(-0.74 +/- 0.05) cm(3) s(-1) and s(Ecm[eV]) = 9.2 +/- 4 x 10(-16)(Ecm[eV])-1.24 +/- 0.05 cm(2) for CD3CDOD+

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远离稳定线核素的性质研究是当前核物理和天体物理研究的热点之一,作为推进这一研究的重要工具,放射性束产生装置却由于对相关反应机制的缺乏了解,在应用过程中受到很大制约。因而前角区类弹碎片的产生机制研究对于放射性束产生装置的改进和实验设计具有重要的意义。 本论文工作利用兰州重离子加速器国家实验室的次级束流产生装置RIBLL,对57AMeV的40Ar束流在9Be和181Ta靶上反应产生的前角区类弹碎片进行了研究。通过磁刚度扫描方法,实验测量得到了Z>8核区近百种核素的动量分布和截面信息。 实验结果表明,在这一能区,碎片的高能部分主要来源于弹核碎裂过程,而在低能端,存在弹核碎裂和核子转移等其它过程的竞争。实验测量得到的碎片产生截面同EPAX2经验公式和AA模型计算相比较,在稳定线附近符合较好,但在远离稳定线区域,特别是丰质子区域,计算结果过高的估计了碎片截面。研究表明,在这一能区,碎片产生截面同弹核能量无关,但同靶核种类的关系不同于“factorization”假设的预计。 本工作对系统同位旋对碎片截面的影响也进行了研究,发现除弹核同位旋外,靶核同位旋对碎片同位素分布也有影响,这种影响随弹核能量的提高而减小。这是核子-核子作用截面的能量相关性等多种因素共同起作用的结果

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核反应总截面是表征原子核反应基本特征的一个基本量,从实验测得的核反应总截面中可以得到有关核反应、核结构和核内核子分布的信息。在由放射性束流所产生奇异核的结构与各种反应机制研究中,反应总截面的测量更是具有特殊的重要性,具有奇异晕核结构的核的一个典型的物理现象就是其反应总截面要比稳定核大很多,I.Tanihata等人最早就是通过对放射性束流的相互作用截面的测量发现了具有奇异结构的核,即中子晕核。这次实验结果得出的跟放射性奇异核性质等有关的一些有趣现象,为放射性束核物理的研究注入了新的活力。我们采用能量为80MeV/u的初级束~(20)Ne轰击3 mm厚的Be靶,在RIBLL上测量了由初级靶上产生碎裂反应所得到的次级~(12)N,~(17)F和~(17)Ne等质子滴线核在Si靶上的中能核反应总截面σ_R,从而补充了现有的中能区放射性核反应总截面的实验数据。由于~(12)N,~(17)F和~(17)Ne都是理论预言可能具有奇异质子结构(质子晕或质子皮)的核,测量它们在中能区的核反应总截面,可以对上述预言提供实验上的检验。在与相邻同位素核的反应截面测量结果的比较中,发现,~(12)N,~(17)F反应截面值明显偏大,~(17)Ne的截面值没有异常。利用基于库仑修正和有限程修正后的微观Glauber模型拟合实验数据,我们发现:对于~(12)N,理论计算反应截面曲线同实验数据明显偏离,因此,它可能具有奇异结构;对于~(17)F,曲线与实验数据符合,没有给出奇异结构特征;对于~(17)Ne,实验和理论分析都没有发现奇异结构。对核反应总截面进行研究的一个有用的理论就是G1auber模型,该模型是一种基于自由核子-核子(N-N)碰撞的与核物质密度有关的理论,因而能够从实验测量到的反应总截面中提取核物质分布的信息。但现有的理论模型不能正确描述中能下核反应总截面。为了改变这一现象,我们对其进行了有限程的修正,并引入一种能够正确描述核物质密度分布的双参数的费米分布,使得实验结果与理论计算在中、高能下都符合的很好。对于奇异核的描述,我们采用核芯加奇异核子的方法,并带入Glauber模型中进行计算,结果与实验值完全重合。这也说明了我们采用的形式正确描述了奇异核的存在方式。

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The pro sectile-like fragments of ~(16)O + ~(64)Ni Reaction (Elab = 96 MeV) were measured by using ionization chamber telescopes. The countour plots of d~36/dndEdz in TKE-θ plane angular distribution integrating over different TKE window. The z-distribution and angular distributions of different fragments from He to O were obtained. The main mechanisms dominating in this reaction were discussed

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In the experiment of nuclear reaction, it is important to measure the mass, charge, energy and emitted direction of particles. For multiparameter measurement, we must use a detector or a group of detectors which can give the time, energy, and position information. The Large Area position sensitive Ionization Chamber(LAIC) is one of the eight experiment terminals of HIRFL. It is built for researching nuclear reactions from low energy to intermediate energy. It is an excellent equipment for energy measurements and atomic number identification of emitted fragments in this energy region. It is also designed to give the time and position information of the emitted fragments by itself. Obviously, an IC can not supply a good timing signal. Moreover, the mechanical installation is different from the original design by some other reasons. In this case, it is not enough to obtain the correct direction information of the emitted fragments. To obtain good timing signals and the correct direction information, some modifications must be made. It is well known that a PPAC can give us excellent timing signals. It also can be easily built as a position sensitive detector. For this reason, a specially designed PPAC is installed in the entrance of the LAIC. For the different purposes, two types of PPACs were designed and tested. Both are OCTPSACs (OCTunit one dimension Position Sensitive Avalanche Counter). In this paper, both OCTPSACs will be introduced. Based on the requirements of the LAIC, the OCTPSACs consist of eight position sensitive PPACs. Each PPAC has an anode and a cathode. In both cases, the sizes are same. But different type of cathodes are used. In one type of OCTPSAC, its cathode is made of wire plane. It consists of gold-plated tungsten wires with the diameter of 20μm, spaced 0.5 mm apart from each other. The anode is a mylar foil which was evaporated by gold layer with the thickness of 50μg/cm~2 mounted on a printed plate in the shape of rectangle. the thickness of mylar foil is 1.5μm. The gap between anode and cathode is 3mm. The performance of the OCTPSAC has been tested by using a ~(252)Cf source in flowing isobutylene gas at the pressure of 3.4mb. The intrinsic time resolution of 289ps and position resolution of 2 mm have been obtained. In another type of OCTPSAC, the cathode is made of mylar foil, which is composed of gold strip by vacuume evaporation method with a special mask on the mylar foil. The thickness and the width of the gold strip is 50μg/cm~2 and 1.7mm. The strips are spaced 0.3 mm apart from each other. The anode is the same as the former type. We have obtained the time resolution of 296ps and position resolution of 2mm by using ~(241)Am-a source when the gas pressure is 6 mb and high voltage is 600V. The working gas is heptane

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We have developed a new experimental system based on a microfluidic chip to determine severe acute respiratory syndrome coronavirus (SARS-Cov). The system includes a laser-induced fluorescence microfluidic chip analyzer, a glass microchip for both polymerase chain reaction (PCR) and capillary electrophoresis, a chip thermal cycler based on dual Peltier thermoelectric elements, a reverse transcription-polymerase chain reaction (RT-PCR) SARS diagnostic kit, and a DNA electrophoretic sizing kit. The system allows efficient cDNA amplification of SARS-CoV followed by electrophoretic sizing and detection on the same chip. To enhance the reliability of RT-PCR on SARS-CoV detection, duplex PCR was developed on the microchip. The assay was carried out on a home-made microfluidic chip system. The positive and the negative control were cDNA fragments of SARS-CoV and parainfluenza virus, respectively. The test results showed that 17 positive samples were obtained among 18 samples of nasopharyngeal swabs from clinically diagnosed SARS patients. However, 12 positive results from the same 18 samples were obtained by the conventional RT-PCR with agarose gel electrophoresis detection. The SARS virus species can be analyzed with high positive rate and rapidity on the microfluidic chip system.