查询词典 quantum leap
- 与 quantum leap 相关的网络例句 [注:此内容来源于网络,仅供参考]
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By employing the Jordan-Wigner transformation and a modified mean field method, we are able to determine its ground-state quantum phase diagram approximately. The chapter IV is the main part of this Thesis. It contains the main innovations in our work. We propose and study in detail a S=1 Ising chain with the interplay of single-ion anisotropy and dimerization. The main results and innovations are the following: We show that the total number of the zero-component of spins at each site is a conserved quantity. This quantity, which may intuitively called as hole's quantum number, is hidden in the system. We show further that the hole's number in the ground-state is zero; By using the Jordan-Wigner transformation, we map this model onto a series of subsystems described by the spin 1/2 dimerized transverse Ising model. We solve the subsystems exactly, by presenting the exact wave functions and spectra;We show that this system exhibits a series of quantum phase transitions by varying the dimerization strength. We determine the quantum critical points exactly. We also show that the criticality is the same as that of the uniform S = 1/2 transverse Ising chain.
第四章是本文的重点及主要创新内容,我们具体研究了自旋为1的在横向单离子晶格场中的一维二聚化Ising链,我们得到的主要结果和创新之处是:(1)证明了这一模型具有一种隐藏的对称性,即自旋第三分量为零的格点数目是一个守恒量,并证明基态出现在空穴数目为零的子空间中;(2)利用Jordan-Wigner 变换将此模型变换到一系列自旋为1/2的横磁场中的二聚化Ising 模型,并给出了相应严格的波函数及能谱;(3)我们发现系统的基态随着二聚化强度的变化将呈现出一系列量子相变,我们得到了量子临界点的精确位置,并证明其临界性质与自旋为1/2的横磁场中的均匀Ising 链中的临界行为属于同一普适类。
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Further theoretical analysis demonstrated the lateral effective width of crescent-shaped quantum wires was 6nm within the regime of quantum size. With two-dimensional separated-confinement-heterostructures, the multi-quantum-wire laser arrays operated in pulsed condition (1kHz/1μs) at room temperature, and their pulse light outpower reached more than 115mW, which is the best among all quantum wire lasers reported previously.
这种多量子线激光器列阵具有二维分别限制的异质结构,并在室温脉冲(重复频率1kHz,脉宽1μs)下产生激射,光脉冲线性输出功率可达115mW以上,这是目前国际上各类量子线激光器的最好水平;子带间能隙最大为27meV,与室温下热离化能相当,优于目前国际上报道的同类量子线激光器的最好水平。
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On the basis of the concept of perfect quantum gas, a physical model of extreme relativity is established for perfect quantum gas, and also according to the conclusions of the state density of the extreme theory of relativity, the densities of quantum statistics′ particle numbers and energy, the extreme relativity′s result of the enthalpy、internal energy and heat capacity of the perfect quantum gas is obtained under the high temperature by strict theory inference.
在理想量子气体概念的基础上,首先建立极端相对论理想量子气体的物理模型;再根据极端相对论的态密度和量子统计的粒子数、能量的密度结论,通过严格的理论推导,得出理想量子气体在高温条件下的极端相对论性的焓、内能和热容量的结果,并将其热容量与高温条件下的理想量子气体、经典理想气体的热容量对比,指出极端相对论与非相对论两种模型、理想量子气体与经典理想气体两种模型的热容量之间的差异,同时分析这些差异的物理原因在于各自气体模型的态密度以及对应体系的波函数的对称性;最后阐明高温条件下极端相对论理想量子气体的热容量在量子统计方面的先进性及应用前景。
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In addition, these effects can also be applied in the design of highly sensitive magnetometers, quantum computation, the quantum logic gate, quantum switches and quantum interferometric optical lithography and so on.
此外,这些效应还可应用于高灵敏磁力计的设计,量子计算,量子逻辑门,量子开关及量子干涉光学平版印刷术等。
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With the precondition of not importing magnetic charge, we gave rules of magnetic flux quantization, and the relations between magnetic flux quantization, Principle Quantum Number , Angular Quantum Number , Magnetic Quantum Number and Spin Quantum Number were built.
在不引入磁荷的前提下,给出了磁通量子化规则,建立了磁通量子化与主量子数、角量子数、磁量子数和自旋量子数的联系。
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After reviewing the criticism on NMR quantum computing given by Braunstein et al, we reiterate that the power of the quantum computers comes from quantum U transformations and superpositions of quantum states rather than entanglements.
然后回顾了Braunstein等人对NMR量子计算的批评,给出了我们的分析和反驳,认为量子计算根源于量子U变换和态的叠加原理,而不应过分强调纠缠的作用。
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The ideal quantum gases obey Bose-Einstein or Fermi-Dirac statistics and the flux can be derived from the known distribution function. In this sense, we develop the kinetic schemes that suitable for ideal quantum gas and investigate the influence of the quantum effect. In this thesis we discuss shock tube problems and shock diffraction by wedges and shock diffraction by cylinders for the ideal quantum gases.
理想量子气体之速度分布依循Bose-Einstein或Fermi-Dirac分布,在已知气体分布函数的情况下,对分布函数取矩可得宏观量及其通量,本文即利用此概念发展适用於理想量子气体之气体运动算则,并探讨量子效应造成之影响,本文探讨理想量子气体之震波管、楔形体和圆柱震波绕射问题。
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Quantum cryptology is a new method for secret communications. Compared to the classical cryptography, the greatest advantages of quantum cryptography are provable security and detectives; this is because the security of quantum cryptography is ensured by quantum no-cloning and Heisenberg's uncertainty principle that instead of relying on some complex mathematical problems.
量子密码技术是一种实现保密通信的新方法,它比较于经典密码的最大优势是具有可证明安全性和可检测性,这是因为量子密码的安全性是由量子物理学中量子不可克隆性和Heisenburg测不准原理来保证的,而不是依靠某些难解的数学问题。
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Quantum cryptography is the combination of classical cryptography and quantum mechanics. The characteristics of quantum mechanics, such as no-cloning theorem and Heisenberg's uncertainty principle, provide the perfect secrecy for quantum cryptographic communication.
量子密码学是密码学与量子力学结合的产物,利用量子不可克隆定理和海森堡测不准原理等量子特性,量子密码通信理论上已经证明是绝对安全。
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Quantum transition which causes the changes of the magnetopolaron lifetime is occurred in the quantum system due to the electron-phonon interaction and the influence of external temperature which is the magnetopolaron leap from the ground state to the first-excited state after absorbing a LO-phonon.
由于电子-声子相互作用和外界温度的影响导致了量子体系的跃迁,即磁极化子吸收了声子的能量由基态跃迁到激发态,造成极化子在基态的寿命发生变化。
- 相关中文对照歌词
- Quantum Leap
- Jump
- The Quantum Enigma (Kingdom Of Heaven Part II)
- Beastin'
- Food & Creative Love
- Leap Of Faith
- Leap Of Faith
- Leap Of Faith
- Sinflation
- It's Hot
- 推荐网络例句
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The small blue capacitor has very high chances to go fully shorted compare to electrolytic capacitor which is very rare.
小蓝电容器具有很高的机会去充分地缩短了比较电解电容器,这是非常罕见的。
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In the Italian campaigns of 1513 and 1515, when the Swiss won the victories of Novara and Marignan, he acted as army chaplain.
在意大利的运动, 1513年和1515年,当瑞士赢得了胜利,诺瓦拉和marignan ,他担任军队的牧师。
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Program Director Meini Nicolai says it's a terrible development for the displaced in Darfur.
尼科莱说,对达尔富尔流离失所的人来说,这样的发展态势太糟糕了。