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Suppression of Chaos and Phase Locking in Two Coupled Nonidentical Neurons under Periodic Input 下载免费PDF全文
Dynamical behaviour of two coupled neurons with at least one of them being chaotic is presented. Bifurcation diagrams and Lyapunov exponents are calculated to diagnose the dynamical behaviour of the coupled neurons with the increasing coupling strength. It is found that when the coupling strength increases, a chaotic neuron can be controlled by the coupling between neurons. At the same time, phase locking is studied by the maxima of the differences of instantaneous phases and average frequencies between two coupled neurons, and the inherent connection of phase locking and the suppression of chaos is formulated. It is observed that the onset of phase locking is closely related to the suppression of chaos. Finally, a way for suppression of chaos in two coupled nonidentical neurons under periodic input is suggested. 相似文献
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Self-assembly behaviour of amphiphilic diblock copolymer in selective solvents studied by synchrotron small-angle x-ray scattering 下载免费PDF全文
The aggregation behaviour of styrene-vinyl benzoic acid (PSm-b-PVBAn) amphiphilic diblock copolymers in selective solvents with different m and n was investigated by synchrotron small-angle x-ray scattering (SAXS). We have carried out a detailed analysis of scattering intensity, dimension, shape and microstructure of the diblock copolymers of narrow distribution in water, methanol, ethanol and isopropanol selective solvents, respectively. We have found that the aggregation behaviour of the copolymer depends on the nature of the solvent and the micelle forms fiat disc objects with the ratio of radius ω=0.4. The average radius gyration Rg of the copolymer decreases as solvents change from isopropanol to ethanol and to methanol, and increases with increasing pH in aqueous solution, but decreases with the addition of COCl2 in ethanol solvent. The scattering intensity of diblock copolymer micelle follows I(h) ∝ h^-α in different selective solutions, suggesting that the PSm-b-PVBAn coils have self-similar structure behaviour or a fractal structure in the selective solvents. All of these revealed that the aggregation behaviour of the diblock copolymer changes dramatically with experimental condition in the selective solvent. The increase of mass fractal dimension (Dm) from 2.12 to 2.47 indicates that the copolymer chain changes from a swollen coil to a rather compact disc in the course of changing solvents, decreasing surface fractal dimension (Ds) from 2.98 to 2.58 indicates that the copolymer micelle change from a rather rough surface to a smooth form in the course of increasing pH in aqueous solutions, and increasing Dm and Ds from 2.29 to 2.35 and 2.70 to 2.90, respectively, indicates the shrinkage of copolymer micelle to a rather compact and rough disc form by adding COCl2 in ethanol solvents. 相似文献
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根据实验室研制的磁流体密封装置,采用自制煤油基磁流体,通过多次实验初步探索到磁体泄放压与外磁场之间的变化规律。 相似文献
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在过去几年中,物理学家们研究出了多种可把原子云团冷却到温度低于1微开(μK)的技术。处于这些云团中的原子是如此之冷,以至于它们不能再被看作是遵守牛顿定律的经典粒子,而应被看作是由量子力学所描述的可传播、衍射和相互干涉的波。现在,人们已经可以把冷原子囚禁在横向尺寸只有100纳米的量子点内,也可使之在长的狭管中流动,就像电子在很细的导线中流动一样。人们开始注意到一种全新的技术的可能性,这一技术与微电子技术相类似,只是它基于受控冷原子流及原子之间的相互作用。这种被称为“原子芯片”的器件可以利用量子力学原理来完成非同寻常的测量或计算工作。 相似文献
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A new tpye of high power microwave souce operated at low magnetic filed is proposed and studied by the particle-in-cell (PIC) method.An oversized uniform backward-wave-oscillator-like structure is connected to a tapered slow-wave structure by a resonalt cavity.In this device,the electron beam current is effectively used to yield microwaves with high efficientcy,and the mode is locked in a wide range of diode voltage to reduce the requirement to the voltage wave form.The PIC siumlation results show that a peak microwave power of 2.1 GW (averaged 1.1GW) with a pure TM01 mode at 10.7GHz is radiated with 4.1GW input beam power,the frequency remains approximately the same when the diode voltage changed from 300kV to 700kV. 相似文献
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本文实验发现具有较大密度和较高速度的93W钨合金长杆模拟弹的穿靶深度反而比密度较小,速度较低的90W钨合金长杆弹的穿靶深度小.针对这一现象,本文从两种材料在侵彻环境下的细观响应特性的差异上给出了有实验根据的合理分析,结论是90W在侵彻环境下较易于形成绝热剪切带,从而在弹头部发生“自锐化”效应所致. 相似文献