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81.
Absorption properties of a driven Doppler—broadened ladder system with hyperfine structure 下载免费PDF全文
We have studied the absorption spectrum of a Doppler-broadened ladder system,where the highest level is coupled into two middle hyperfine sublevels by a strong coherent field.We find that,when the system is considered as homogeneous,either two or three spectral components are observed,depending on the detuning of the coherent field.but when the velocity distribution of atoms is considered,we can always observe one electromagnetically induced transparency (EIT) window with high dispersion.So the atomic hyperfine structure cannot be an impediment for obtaining EIT. 相似文献
82.
研究了快速双原子分子离子在固体中穿行时,尾流效应对各离子电荷态以及库仑爆炸过程的影响.借助于线性介电响应理论和局域介电函数,离子之间的动力学相互作用势可以表示成对称的屏蔽库仑势和非对称的尾势.通过对分子离子上所有束缚电子的总能量进行变分和求解单个离子的运动方程,自洽地确定出分子离子中每个离子的电荷态.数值结果表明,由于尾流效应的影响,在初始穿行阶段,分子离子中导航离子的电荷数随穿行深度的增加而单调递增,而尾随离子的电荷数则随穿行深度的增加而振荡.但当穿行深度很大时,两个离子的电荷数都趋于具有相同速度的孤立离子的电荷数.此外,还发现分子轴的取向朝入射速度方向偏转 相似文献
83.
We present a new quantum protocol for solving detectable Byzantine agreement problem between three parties by employing one quantum key distribution protocol. The protocol is suggested by a special four-qubit entangled state instead of singlet states, which shows that singlet states are not necessary to achieve detectable Byzantine agreement. 相似文献
84.
85.
T. Amthor J. Denskat C. Giese N. N. Bezuglov A. Ekers L. S. Cederbaum M. Weidemüller 《The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics》2009,53(3):329-335
We investigate a possible mechanism for the autoionization of ultracold Rydberg gases, based on the resonant coupling of Rydberg
pair states to the ionization continuum.
Unlike an atomic collision where the wave functions begin to overlap,
the mechanism considered here involves only the long-range dipole
interaction and is in principle possible in a static system.
It is related to the process of intermolecular Coulombic decay (ICD).
In addition, we include the interaction-induced motion of the atoms and the effect of multi-particle systems in this work.
We find that the probability for this ionization mechanism can be increased in many-particle systems featuring attractive
or repulsive van der Waals interactions. However, the rates for ionization through resonant dipole coupling are very low.
It is thus unlikely that this process contributes to the autoionization of Rydberg gases in the form presented here, but it
may still act as a trigger for secondary ionization
processes.
As our picture involves only binary interactions, it remains to be investigated if collective effects of an
ensemble of atoms can significantly influence the ionization probability.
Nevertheless our calculations may serve as a starting point for the investigation of more complex systems, such as the coupling
of many pair states proposed in [P.J. Tanner et al., Phys. Rev. Lett. 100, 043002 (2008)]. 相似文献
86.
F. X. Bronold H. Deutsch H. Fehske 《The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics》2009,54(3):519-544
Plasma-boundaries floating in an ionized gas are usually negatively charged. They accumulate electrons more efficiently than
ions leading to the formation of a quasi-stationary electron film at the boundaries. We propose to interpret the build-up
of surface charges at inert plasma boundaries, where other surface modifications, for instance, implantation of particles
and reconstruction or destruction of the surface due to impact of high energy particles can be neglected, as a physisorption
process in front of the wall. The electron sticking coefficient se and the electron desorption time τe, which play an important role in determining the quasi-stationary surface charge, and about which little is empirically and
theoretically known, can then be calculated from microscopic models for the electron-wall interaction. Irrespective of the
sophistication of the models, the static part of the electron-wall interaction determines the binding energy of the electron,
whereas inelastic processes at the wall determine se and τe. As an illustration, we calculate se and τe for a metal, using the simplest model in which the static part of the electron-metal interaction is approximated by the classical
image potential. Assuming electrons from the plasma to loose (gain) energy at the surface by creating (annihilating) electron-hole
pairs in the metal, which is treated as a jellium half-space with an infinitely high workfunction, we obtain se≈10-4 and τe≈10-2 s. The product seτe≈10-6 s has the order of magnitude expected from our earlier results for the charge of dust particles in a plasma but individually se is unexpectedly small and τe is somewhat large. The former is a consequence of the small matrix elements occurring in the simple model while the latter
is due to the large binding energy of the electron. More sophisticated theoretical investigations, but also experimental support,
are clearly needed because if se is indeed as small as our exploratory calculation suggests, it would have severe consequences for the understanding of the
formation of surface charges at plasma boundaries. To identify what we believe are key issues of the electronic microphysics
at inert plasma boundaries and to inspire other groups to join us on our journey is the purpose of this colloquial presentation. 相似文献
87.
基于最低未被占据分子轨道(LUMO)和最高被占据分子轨道(HOMO)的高斯态密度分布与载流子在允许量子态中的费米-狄拉克(Fermi-Dirac)分布,提出有机半导体中物理掺杂的理论模型;研究了掺杂浓度、温度和禁带宽度对载流子浓度的影响,并与一些报道的实验结果做了比较.研究发现无论是否掺杂,温度升高时,有机半导体中的载流子浓度都会增大,并且随温度倒数的线性减小而指数增大;对于本征有机半导体,载流子浓度随禁带宽度的增大而指数下降,随高斯分布宽度的平方指数增加;对杂质和主体不同能级关系的掺杂情形下掺杂浓度对载
关键词:
有机半导体
掺杂
高斯态密度
载流子浓度 相似文献
88.
A. Nadeem M. Nawaz S. U. Haq S. Shahzada M. A. Baig 《The European Physical Journal D - Atomic, Molecular, Optical and Plasma Physics》2009,53(2):147-151
We report term energies and quantum defects of highly excited even-parity states of mercury in the 83 876–84 140 cm-1 energy range, employing a two-step laser excitation scheme via the S0↦6s6p3P1 inter-combination transition. Two dye lasers, pumped by a common Nd:YAG laser, were frequency doubled by BBO crystals and
used to record the spectra in conjunction with a thermionic diode ion detector. Our new observations include the much extended
D2 (22 ≤n ≤52) series and a few members of the S1 (24 ≤n ≤30) Rydberg series. Members of the D2 Rydberg series with such a high n value are reported for the first time. The relative intensities of the D2 and S1 transitions (m = 4, 5 and 6) of group II-B elements excited from the P1 inter-combination states are also discussed. 相似文献
89.
On textured n-type silicon substrates for solar cell manufacturing, the relation between light trapping behavior, structural
imperfections, energetic distribution of interface state densities and interface recombination losses were investigated by
applying surface sensitive techniques. The field-modulated surface photovoltage (SPV), in-situ photoluminescence (PL) measurements, total hemispherical UV-NIR-reflectance measurements and electron microscopy (SEM) were
employed to yield detailed information on the influence of wet-chemical treatments on preparation induced micro-roughness
and electronic properties of polished and textured silicon substrates. It was shown that isotropic as well as anisotropic
etching of light trapping structures result in high surface micro-roughness and density of interface states. Removing damaged
surface layers in the nm range by wet-chemical treatments, the density of these states and the related interface recombination
loss can be reduced. In-situ PL measurements were applied to optimise HF-treatment times aimed at undamaged, oxide-free and hydrogen-terminated substrate
surfaces as starting material for subsequent solar cell preparations.
相似文献
90.
The quantum Rabi-Stark model, where the linear dipole coupling and the nonlinear Stark-like coupling is present on an equal footing, is studied within the tunable extended coherent states. The eigenvalues and eigenstates are therefore obtained exactly. Surprisingly, the entanglement entropy in the ground-state is found to jump suddenly with the coupling strength. The first-order quantum phase transition can be detected by level crossing of the ground state and the first excited state, which is however lacking in the original linear quantum Rabi model. Performing the first-order approximation in the present theory, we can derive closed-form analytical results for the ground-state. Interestingly, it agrees well with the exact solutions up to the ultra-strong coupling regime in a wide range of model parameters. The spectral collapses when the absolute value of the nonlinear coupling strength approaches to twice the cavity frequency is observed with the help of new solutions in the limits. 相似文献