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111.
马宋设 《原子与分子物理学报》2009,26(6):1114-1118
提出一种方案制备W态,方案基于暗态绝热过程.制备过程中,所有原子都处于基态,光纤模保持在真空态,在一定条件下可以忽略腔场激发,因此,方案非常抗消相干.方案的另一个优点是:只要满足绝热条件,不必要精确调节相互作用时间.方案成功的几率随原子数的增加而增加. 相似文献
112.
Lang J Sloop DJ Lin TS 《Journal of magnetic resonance (San Diego, Calif. : 1997)》2005,176(2):4731-256
We report a new technique to map the orientational anisotropy of paramagnetic systems without physically changing the crystal orientations in near zero-field (NZF) pulsed EPR experiments. By implementing three sets of orthogonal coils around the sample, we are ble to create a magnetic vector up to 2 mT in any three-dimensional orientation in space. In NZF region, the hyperfine tensor elements are comparable to the electronic Zeeman interaction energy, thus very rich spectral patterns can be obtained by "dialing" in a magnetic field vector without moving the sample. The technique further allows us to examine the site symmetry of organic crystals and powdered solids doped with chromophores which can be photo-excited to the triplet state by laser light. The technique is exemplified in the study of pentacene in p-terphenyl crystals. 相似文献
113.
A variational approach is developed to study the groundstate (GS) of the
two-site Holstein model. By the extended coherent state, where the more
phonon correlations are easily incorporated, we can get the very accurate ground state energy for all electron-phonon coupling range in typical values of hopping integral t=0.5,1.1, and 2.1 (in units of phonon frequency ω0), which covers the crossover region from
antiadiabatic limit to the adiabatic limit. Within a very wide t
range [0,2.7], the exact results for the GS energy are obtained
with the twelfth (fourteenth) order corrections to the zeroth order wave
function. Moreover, the present approach is more concise than any
other analytical ones in this field, and hopefully can be easily
generalized to many other Holstein models. 相似文献
114.
FAN Hong-Yi HE Hai-Yan 《理论物理通讯》2005,44(7)
Using the nonlinear coherent state representation we derive nonlinear squeezed states and the multiplication rule of nonlinear squeezing operators. We find that the symplectic matrices multiplication rule in nonlinear coherent state projection operator representation maps into the multiplication rule of successive nonlinear squeezing operators.The technique of integral within an ordered product of operators plays an essential role in deriving the multiplication rule. 相似文献
115.
YUAN Hong-Chun QI Kai-Guo 《理论物理通讯》2005,44(8)
We mostly investigate two schemes. One is to teleport a multi-mode W-type entangled coherent state using a peculiar bipartite entangled state as the quantum channel different from other proposals. Based on our formalism,teleporting multi-mode coherent state or squeezed state is also possible. Another is that the tripartite entangled state is used as the quantum channel of controlled teleportation of an arbitrary and unknown continuous variable in the case of three participators. 相似文献
116.
We propose a scheme for the generation of entangled coherent states for the center-of-mass and relative vibrational modes of two trapped ions. In the scheme the ions are simultaneously illuminated by a single standing-wave laser tuned to the carrier. The scheme allows the production of an entangled coherent states with a considerably high speed as long as a laser field of sufficiently high intensity is available. 相似文献
117.
Lili Gao Bin Chen Michael Lerche Esen E. Alp Wolfgang Sturhahn Jiyong Zhao Hasan Yava? Jie Li 《Journal of synchrotron radiation》2009,16(6):714-722
The applications of nuclear resonant scattering in laser‐heated diamond anvil cells have provided an important probe for the magnetic and vibrational properties of 57Fe‐bearing materials under high pressure and high temperature. Synchrotron X‐ray diffraction is one of the most powerful tools for studying phase stability and equation of state over a wide range of pressure and temperature conditions. Recently an experimental capability has been developed for simultaneous nuclear resonant scattering and X‐ray diffraction measurements using synchrotron radiation. Here the application of this method to determine the sound velocities of compressed Fe3C is shown. The X‐ray diffraction measurements allow detection of microscale impurities, phase transitions and chemical reactions upon compression or heating. They also provide information on sample pressure, grain size distribution and unit cell volume. By combining the Debye velocity extracted from the nuclear resonant inelastic X‐ray scattering measurements and the structure, density and elasticity data from the X‐ray diffraction measurements simultaneously obtained, more accurate sound velocity data can be derived. Our results on few‐crystal and powder samples indicate strong anisotropy in the sound velocities of Fe3C under ambient conditions. 相似文献
118.
We propose a scheme for sharing an arbitrary unknown two-qubit state among three parties by using a four-qubit cluster-class state and a Bell state as a quantum channel. With a quantum controlled phase gate (QCPG) operation and a local unitaryoperation, any one of the two agents has the access to reconstruct the original state if he/she collaborates with the other one, whilst individual agent obtains no information. As all quantum resource can be used to carry the useful information, the intrinsic efficiency of qubits approaches the maximal value. Moreover, the present scheme is more feasible with present-day technique. 相似文献
119.
120.
Ronald F. Bruner 《International Journal of Theoretical Physics》2009,48(9):2704-2714
It is shown that if a volume element V, of space is assumed to have intrinsic energy E, then basic principles of mechanics, thermodynamics and special relativity lead to the equation of state: E=pV, where p is the pressure. When this equation of state is incorporated in the Einstein equations it leads to the prediction that the
orbital speed of matter circling a visible galaxy embedded in a spherical galactic halo should be relativistic, in disagreement
with observations. However, it also leads directly to the interesting notion that the inertial mass of such a medium can be
understood as a resistance to being compressed via Lorentz contraction. It is then shown that the mathematical structure of
thermodynamics suggests another plausible definition of pressure if we allow for the possibility that the intrinsic energy
of spacetime may not be described by the same work-energy relationship as ordinary matter. This additional possibility leads
to the equation of state: E=−pV. While both of these equations of state describe forms of energy that are quite unlike ordinary energy, neither alone is
able to account for observed rotational velocity curves of matter orbiting visible galaxies. Therefore, the possibility that
space has two distinct components of energy is investigated. This results in a plausible, two-component equation of state
in which the former equation of state is tentatively identified as the “dark matter” (DM) component, the latter as the “dark
energy” (DE) component. The effective equation of state of space, accounting for the presence of both components, may then
be written in the form: p=w
ε, where ε is the total energy density, p the total pressure, and w represents the fractional excess of DM over DE (and therefore satisfies: −1≤w≤+1). Given the wide range of possible spacetime properties implied by this equation it appears to be a viable candidate for
explaining observations presently attributed to the presence of both DM and DE. Specifically, the static, spherically symmetric
solution of Einstein’s field equations, neglecting effects of ordinary matter, predicts the inverse r
2 distribution of intrinsic space energy required to explain observed constant rotational velocity curves for matter in circular
orbits around visible galaxies embedded within spherically symmetric galactic halos. The proposed equation of state is also
capable of describing regions of space undergoing accelerated expansion as regions where DE is dominant (i.e., w<−1/3). 相似文献