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Anharmonic 1D actuator model including electrostatic and Casimir forces with fractional damping perturbed by an external force 被引量:3
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作者 Maryam Mansoori Kermani Maryam Dehestani 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2018年第3期528-541,共14页
We modeled a one-dimensional actuator including the Casimir and electrostatic forces perturbed by an external force with fractional damping. The movable electrode was assumed to oscillate by an anharmonic elastic forc... We modeled a one-dimensional actuator including the Casimir and electrostatic forces perturbed by an external force with fractional damping. The movable electrode was assumed to oscillate by an anharmonic elastic force originated from Murrell- Mottram or Lippincott potential. The nonlinear equations have been solved via the Adomian decomposition method. The behavior of the displacement of the electrode from equilibrium position, its velocity and acceleration were described versus time. Also, the changes of the displacement have been investigated according to the frequency of the external force and the voltage of the electrostatic force. The convergence of the Adomian method and the effect of the orders of expansion on the displacement versus time, frequency, and voltage were discussed. The pull-in parameter was obtained and compared with the other models in the literature. This parameter was described versus the equilibrium position and anharmonicity constant. 展开更多
关键词 Murrell-Mottram potential Lippincott potential casimir force Fractional damping Pull-in parameter Adomian decomposition method
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Isotope effect on the Casimir force
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作者 Lanyi Xie Fuwei Yang Bai Song 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2023年第10期131-137,共7页
Isotopic dependence of the Casimir force is key to probing new physics and pushing novel technologies at the micro and nanoscale, but is largely unexplored. In 2002, an isotope effect of 10^(-4) was estimated for met... Isotopic dependence of the Casimir force is key to probing new physics and pushing novel technologies at the micro and nanoscale, but is largely unexplored. In 2002, an isotope effect of 10^(-4) was estimated for metals—orders of magnitude beyond the experimental resolution. Here, by employing the Lifshitz theory, we reveal a significant isotope effect of over 10^(-1) for polar dielectrics. This effect arises from the isotope-mass-induced line shift of the zone-center optical phonons and is insensitive to the linewidth. We perform numerical analyses on both the imaginary and real-frequency axes, and derive analytical formulas for predicting the isotope effect. The three-orders-of-magnitude difference between polar dielectrics and metals arises from the distinct isotopic dependence of the phonon and plasma frequencies. Our work opens up a new avenue for engineering forces at small scales and may also facilitate the quest for the fifth force of nature. 展开更多
关键词 isotope effect casimir force polar dielectric phonon line shift plasma frequency
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Casimir Force Correction Between Parallel Polysilicon Plates
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作者 丁建宁 孟永钢 温诗铸 《Tsinghua Science and Technology》 SCIE EI CAS 2002年第3期276-280,共5页
Both the size of the components and the separation between them in some microelectromechanical systems (MEMS) are already in the sub-micrometer regime, where quantum mechanical effects such as the Casimir effect will... Both the size of the components and the separation between them in some microelectromechanical systems (MEMS) are already in the sub-micrometer regime, where quantum mechanical effects such as the Casimir effect will need to be considered. This paper theoretically analyzes the roughness, electrical conductivity, and temperature corrections due to the Casimir force between two parallel polysilicon plates. The theoretical results show that the combined effects of roughness, conductivity and temperature cause a maximum relative error of the Casimir force per unit area of 26.2% between parallel polysilicon plates separated by 1 μm. Therefore, the surface roughness and finite conductivity corrections should be taken into account when calculating precise Casimir forces with separations on the order of 1 μm. 展开更多
关键词 casimir force POLYSILICON microelectromechanical system (MEMS)
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Quantitative Structure-activity Relationship for Heterogeneous Phenol Compounds Using Zero Point Energy 被引量:2
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作者 金飙 刘翠 金俏 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2010年第9期1353-1361,共9页
The calculations of quantum mechanical descriptors of 79 heterogeneous phenol compounds were presented at the HF/6-31G* and B3LYP/6-31G* levels of theory.Quantitative structure-activity relationship(QSAR) models o... The calculations of quantum mechanical descriptors of 79 heterogeneous phenol compounds were presented at the HF/6-31G* and B3LYP/6-31G* levels of theory.Quantitative structure-activity relationship(QSAR) models of the growth inhibition activity(pIGC50) of 79 heterogeneous phenols were established using some of the following calculated quantum mechanical descriptors:the zero point energy(ZPE),the front-line orbital energy(EHOMO,ELUMO),the differences between HOMO and LUMO energies(ΔE),and the molecular dipole moment(μ).The QSAR models obtained by employing multiple linear regression techniques are aimed at correlating the structures to their experimental pIGC50.The most significant is a one-parameter linear equation with the correlation coefficient R2 values to be 0.855(HF) and 0.844(B3LYP).The results display that the zero point energy as a special quantum-chemical descriptor in the QSAR equations indicates the existence of Casimir force in the interaction between the molecules of compounds and biological receptor(cells).The physical mechanism of structure-activity of the molecules at a deeper level would have a new understanding. 展开更多
关键词 QSAR zpe casimir force quantum-chemistry descriptor
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Pull-in instability analyses for NEMS actuators with quartic shape approximation 被引量:1
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作者 Junsheng DUAN Zongxue LI Jinyuan LIU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2016年第3期303-314,共12页
The pull-in instability of a cantilever nano-actuator model incorporating the effects of the surface, the fringing field, and the Casimir attraction force is investigated. A new quartic polynomial is proposed as the s... The pull-in instability of a cantilever nano-actuator model incorporating the effects of the surface, the fringing field, and the Casimir attraction force is investigated. A new quartic polynomial is proposed as the shape function of the beam during the deflection, satisfying all of the four boundary values. The Gaussian quadrature rule is used to treat the involved integrations, and the design parameters are preserved in the evaluated formulas. The analytic expressions are derived for the tip deflection and pull-in parameters of the cantilever beam. The micro-electromechanical system (MEMS) cantilever actuators and freestanding nano-actuators are considered as two special cases. It is proved that the proposed method is convenient for the analyses of the effects of the surface, the Casimir force, and the fringing field on the pull-in parameters. 展开更多
关键词 micro-electromechanical system (MEMS) nano-electromechanical system(NEMS) casimir force pull-in instability quartic shape function
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On the Cosmical Zero Point Energy Density 被引量:1
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作者 Bo Lehnert 《Journal of Modern Physics》 2016年第10期1112-1119,共8页
The frequency spectrum of the cosmical Zero Point Energy (ZPE) and its total density are so far unknown in their details. In the present complementary investigation, a revised theory forms the basis for studies of thi... The frequency spectrum of the cosmical Zero Point Energy (ZPE) and its total density are so far unknown in their details. In the present complementary investigation, a revised theory forms the basis for studies of this concept in two respects. It first applies to the observable universe considered as an entity, as well as to included subregions such as the galaxies with supermassive black holes. Second, experiments are proposed on the maximum Casimir force arising between two metal plates of different materials and with a vanishing air gap in their spacing. This serves the purpose of making an indirect determination of the ZPE energy density in the laboratory, i.e. at the Earth’s orbit. The ZPE energy density is interpreted as dark matter density and its pressure gradient as dark energy force density. 展开更多
关键词 Zero Point Energy casimir force Dark Matter Dark Energy
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