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1.
We study the mechanism of van der Waals(vdW)interactions on phonon transport in atomic scale,which would boost developments in heat management and energy conversion.Commonly,the vdW interactions are regarded as a hindrance in phonon transport.Here we propose that the vdW confinement can enhance phonon transport.Through molecular dynamics simulations,it is realized that the vdW confinement is able to make more than two-fold enhancement on thermal conductivity of both polyethylene single chain and graphene nanoribbon.The quantitative analyses of morphology,local vdW potential energy and dynamical properties are carried out to reveal the underlying physical mechanism.It is found that the confined vdW potential barriers reduce the atomic thermal displacement magnitudes,leading to less phonon scattering and facilitating thermal transport.Our study offers a new strategy to modulate the phonon transport.  相似文献   
2.
We studied the temperature dependence of the light yield of linear alkyl benzene(LAB)-based and mesitylene-based liquid scintillators. The light yield increases by 23% for both liquid scintillators when the temperature is lowered from 26 to-40, correcting for the temperature response of the photomultiplier tube. The measurements help to understand the energy response of liquid scintillator detectors. Especially, the next generation reactor neutrino experiments for neutrino mass hierarchy, such as the Jiangmen Underground Neutrino Observatory(JUNO), require very high energy resolution. As no apparent degradation on the liquid scintillator transparency was observed, lowering the operation temperature of the detector to ~4 will increase the photoelectron yield of the detector by 13%, combining the light yield increase of the liquid scintillator and the quantum efficiency increase of the photomultiplier tubes.  相似文献   
3.
Liquid scintillators are widely used as the neutrino target in neutrino experiments.The absorption and emission of different components of a ternary liquid scintillator (Linear Alkyl Benzene (LAB) as the solvent,2,5-diphenyloxazole (PPO) as the fluor and p-bis-(o-methylstyryl)-benzene (bis-MSB) as wavelength shifter) are studied.It is shown that the absorption of this liquid scintillator is dominant by LAB and PPO at wavelengths less than 349 nm,and the absorption by bis-MSB becomes prevalent at the wavelength larger than 349 nm.The fluorescence quantum yields,which are the key parameters to model the absorption and re-emission processes in large liquid scintillation detectors,are measured.  相似文献   
4.
本文结合实例,尝试从不同的视角用思维导图的方式对椭圆的弦心三角形的面积最值做一些探究,帮助学生快速识别这类模型,建立模型,再应用模型解题,最后优化模型.  相似文献   
5.
α from natural radioactivity may interact with a nucleus and emit a neutron. The reaction introduces the background to the liquid scintillator(LS) based neutrino experiments. In the LS detector, α comes from 238 U,232Th,and 210 Po decay chains. For Gadolinium-doped LS(Gd-LS) detector, α also comes from 227 Ac. The nucleus 13 C is a natural component of Carbon which is rich in the LS. The background rate and spectrum should be subtracted carefully from the neutrino candidates. This paper describes the calculation of neutron yield and spectrum with uncertainty estimated. The results are relevant for many existing neutrino experiments and future LS or Gd-LS based experiments.  相似文献   
6.
本文阐述了直接电位分析法定位和斜率校准的理论与测量原理。Eemf pM标准曲线法不必考虑定位和斜率校准问题 ;单点定位pMX 直读法 ,只进行定位校准 ,没有完全校正电极理论与实际斜率不一致所产生的测量误差 ;双点定位pMX 直读法在pMS1~pMS2 之间同时进行定位与斜率校准 ,测量的相对误差较小  相似文献   
7.
提出了一种电化学抑制偶联化学再生式的高性能离子色谱抑制柱,用0.125-0.25mol/L磷酸作为阴离子色谱电化学抑制柱的电解液,电解液的废液经H^ 型离子树脂柱交换后,在线循环使用;抑制柱结合了电化学抑制和化学再生的优点,电解液的利用效率高,抑制柱基本实现无时限地连续工作,性能稳定,抑制效率为99.5%,装配于离子色谱仪检测阴离子,被测离子的峰高及保留时间的重复性的相对标准偏差均小于1.8%。  相似文献   
8.
利用高灵敏度的石墨炉原子吸收光谱仪对来自不同镍环境和不同状态的40个人眼晶状体中的镍进行了测试。在测试中,采用了方便的HNO,消解法对样品进行预处理,通过实验比较测得普通石墨管对镍的特征质量是长寿命石墨管的4.6倍,然后用长寿命石墨管对各种样品的消解后获得的测试液进行镍的测定,由此得到每个人眼晶状体中的绦量。结果表明:正常人的透明晶状体中的镍量明显低于患有白内障人眼晶状体中的镍量;而与镍矿直接接触的白内障患者的晶状体中的镍量显著高于非直接接触镍矿白内障患者和一般白内障患者晶状体中的镍量。这种关联表明人眼晶状体中的镍元素可能是白内障的致病因素之一。  相似文献   
9.
Qiliang Wang 《中国物理 B》2022,31(5):57702-057702
A quasi-vertical GaN Schottky barrier diode with a hybrid anode structure is proposed to trade off the on-resistance and the breakdown voltage. By inserting a SiN dielectric between the anode metal with a relatively small length, it suppresses the electric field crowding effect without presenting an obvious effect on the forward characteristics. The enhanced breakdown voltage is ascribed to the charge-coupling effect between the insulation dielectric layer and GaN. On the other hand, the current density is decreased beneath the dielectric layer with the increasing length of the SiN, resulting in a high on-resistance. Furthermore, the introduction of the field plate on the side wall forms an metal-oxide-semiconductor (MOS) channel and decreases the series resistance, but also shows an obvious electric field crowding effect at the bottom of the mesa due to the quasi-vertical structure.  相似文献   
10.
Ji-Yao Du 《中国物理 B》2022,31(4):47701-047701
Effect of anode area on temperature sensing ability is investigated for a vertical GaN Schottky-barrier-diode sensor. The current-voltage-temperature characteristics are comparable to each other for Schottky barrier diodes with different anode areas, excepting the series resistance. In the sub-threshold region, the contribution of series resistance on the sensitivity can be ignored due to the relatively small current. The sensitivity is dominated by the current density. A large anode area is helpful for enhancing the sensitivity at the same current level. In the fully turn-on region, the contribution of series resistance dominates the sensitivity. Unfortunately, a large series resistance degrades the temperature error and linearity, implying that a larger anode area will help to decrease the series resistance and to improve the sensing ability.  相似文献   
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