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1)  unitary gauge
幺正规范
1.
An exact calculation of the d|-sg vertex was made in the unitary gauge by Chia et al.
Chia等人在幺正规范下计算了(?)sg顶角,并且通过Ward-Takahashi等式对顶角进行重整化,得到有限的、规范独立的基本函数E_0(x_t)和E′_0(x_t)。
2)  left normal typeAmonoids
左正规型A幺半群
3)  Norming
规范正规
4)  normal fuzzy power monoid
正规模糊幂幺半群
1.
In this paper,fuzzy sets theory is used to power semigroups,and the concepts of fuzzy power semigroups(resp monoids) and normal fuzzy power monoids are introduced and some related properties and structures are considered systematically.
将模糊集理论运用到幂半群,给出了模糊幂半群(幺半群)和正规模糊幂幺半群的定义,进一步研究了其性质和结构。
5)  unitary transformation
幺正变换
1.
By utilizing the unitary transformation such as the rotational transformation in Schwinger angular momentum representation,Bogoliubov transformation and the squeezed transformation,the two-body interacting Hamiltonian in the form of H∧_k=A_1a~+_ka_k+A_2b~+_kb_k+(Ba~+_kb~+_k+B~*a_kb_k)+(Ca~+_kb_k+C~*b~+_ka_k)is diagonalized.
利用Schwinger角动量表象的转动变换,玻戈留玻夫变换,压缩变换等幺正变换,对∧Hk=A1ak+ak+A2bk+bk+(Bak+bk++B*akbk)+(Cak+bk+C*bk+ak)形式磁有序物质的二体耦合哈密顿量进行了对角化。
2.
The Hamiltonian of the system was diagonalized by unitary transformation to obtain the eigenenergy spectra of the circuit.
通过幺正变换将系统的哈密顿量对角化,给出体系的本征能谱。
3.
We find that when the channels are nonmaximally (entangled) states by introducing an ancillary qubit and constructing an unitary transformation properly,teleportation of two-particle entangled state can be implemented with certain probability.
发现在使用非最大纠缠态作为量子通道时,通过引进一个辅助粒子,并构造一个幺正变换矩阵,即可以一定的几率完成二粒子纠缠态的隐形传输。
6)  unitary operation
幺正操作
1.
The former receivers randomly perform an arbitrary unitary operation on each of the particles, which is equivalent to eneryption of the particle with a random key and ensures the security of the present pro- tocol.
先前的接收者在每个粒子上随机地执行一个任意的幺正操作,相当于用一个随机的密钥加密粒子,确保了这个方案的安全性。
补充资料:幺正变换
      见表象理论。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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