首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   370862篇
  免费   4173篇
  国内免费   963篇
化学   189610篇
晶体学   5560篇
力学   16211篇
综合类   8篇
数学   46629篇
物理学   117980篇
  2021年   3576篇
  2020年   3933篇
  2019年   4328篇
  2018年   6048篇
  2017年   6206篇
  2016年   8859篇
  2015年   5390篇
  2014年   8199篇
  2013年   18575篇
  2012年   14845篇
  2011年   17141篇
  2010年   12559篇
  2009年   12257篇
  2008年   15270篇
  2007年   15050篇
  2006年   13836篇
  2005年   12266篇
  2004年   11301篇
  2003年   9904篇
  2002年   9783篇
  2001年   11164篇
  2000年   8475篇
  1999年   6548篇
  1998年   5426篇
  1997年   5187篇
  1996年   4986篇
  1995年   4238篇
  1994年   4265篇
  1993年   4100篇
  1992年   4525篇
  1991年   4659篇
  1990年   4485篇
  1989年   4326篇
  1988年   4100篇
  1987年   4208篇
  1986年   3970篇
  1985年   5010篇
  1984年   5051篇
  1983年   4163篇
  1982年   4266篇
  1981年   3993篇
  1980年   3900篇
  1979年   4164篇
  1978年   4136篇
  1977年   4132篇
  1976年   4131篇
  1975年   3888篇
  1974年   3843篇
  1973年   3894篇
  1972年   2730篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
2.
3.
4.
In this work, we have used the MuMax3 software to simulate devices consisting of a ferromagnetic thin film placed over a heavy metal thin film. The devices are two interconnected partial-disks where a Néel domain wall is formed in the disks junction. In our simulations we investigate devices with disk radius r=50 nm and different distance d between the disks centers (from d=12 nm to d=2R=100 nm). By applying strong sinusoidal external magnetic fields, we find a mechanism able to create, annihilate and even manipulate a skyrmion in each side of the device. This mechanism is discussed in terms of interactions between skyrmion and domain wall. The Néel domain wall formed in the center of the device interacts with the Néel skyrmion, leading to a process of transporting a skyrmion from one disk to the other periodically. Our results have relevance for potential applications in spintronics such as logical devices.  相似文献   
5.
6.
The European Physical Journal E - The isothermal gas adsorption of two hexane isomers (n-hexane and cyclohexane) in the mesopores of MCM-41 silica have been investigated by small angle neutron...  相似文献   
7.
In order to describe the dynamics of the tJ model, two different families of first-order Lagrangians in terms of the generators of the Hubbard algebra are found. Such families correspond to different dynamical second-class constrained systems. The quantization is carried out by using the path-integral formalism. In this context the introduction of proper ghost fields is needed to render the model renormalizable. In each case the standard Feynman diagrammatics is obtained and the renormalized physical quantities are computed and analyzed. In the first case a nonperturbative large-N expansion is considered with the purpose of studying the generalized Hubbard model describing N-fold-degenerate correlated bands. In this case the 1/N correction to the renormalized boson propagator is computed. In the second case the perturbative Lagrangian formalism is developed and it is shown how propagators and vertices can be renormalized to each order. In particular, the renormalized ferromagnetic magnon propagator coming from our formalism is studied in details. As an example the thermal softening of the magnon frequency is computed. The antiferromagnetic case is also analyzed, and the results are confronted with previous one obtained by means of the spin-polaron theories.  相似文献   
8.
Experimental data on the effect of thallium and sodium impurities on the lattice heat conductivity of PbTe at room temperature are reported. Because the lattice of lead chalcogenides is strongly polarized near charged impurities, the effect of impurities on the lattice heat conductivity depends substantially on their charge state. This property of the material has been used to determine the charge state of the thallium impurity in PbTe. The results obtained argue for a model of quasi-local thallium-impurity states which assumes low electron-correlation energy at an impurity center. Fiz. Tverd. Tela (St. Petersburg) 40, 1206–1208 (July 1998)  相似文献   
9.
10.
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号