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11.
The thermal expansion and low temperature and low temperature specific heat were measured for Y1−xScxMn2. The results are discussed in terms of spin fluctuations and compared with those of Y(Mn1−xAlx)2, which show al local moment character. It is revealed that Y1−xScxMn2 is a typical nearly antiferromagnet in which giant spin fluctuations are thermally excited.  相似文献   
12.
Response of an elastic Bingham fluid to oscillatory shear   总被引:1,自引:0,他引:1  
The response of an elastic Bingham fluid to oscillatory strain has been modeled and compared with experiments on an oil-in-water emulsion. The newly developed model includes elastic solid deformation below the yield stress (or strain), and Newtonian flow above the yield stress. In sinusoidal oscillatory deformations at low strain amplitudes the stress response is sinusoidal and in phase with the strain. At large strain amplitudes, above the yield stress, the stress response is non-linear and is out of phase with strain because of the storage and release of elastic recoverable strain. In oscillatory deformation between parallel disks the non-uniform strain in the radial direction causes the location of the yield surface to move in-and-out during each oscillation. The radial location of the yield surface is calculated and the resulting torque on the stationary disk is determined. Torque waveforms are calculated for various strains and frequencies and compared to experiments on a model oil-in-water emulsion. Model parameters are evaluated independently: the elastic modulus of the emulsion is determined from data at low strains, the yield strain is determined from the phase shift between torque and strain, and the Bingham viscosity is determined from the frequency dependence of the torque at high strains. Using these parameters the torque waveforms are predicted quantitatively for all strains and frequencies. In accord with the model predictions the phase shift is found to depend on strain but to be independent of frequency.Notation A plate strain amplitude (parallel plates) - A R plate strain amplitude at disk edge (parallel disks) - G elastic modulus - m torque (parallel disks) - M normalized torque (parallel disks) = 2m/R 30 - N ratio of viscous to elastic stresses (parallel plates) =µ A/ 0 ratio of viscous to elastic stresses (parallel disks) =µ A R/0 - r normalized radial position (parallel disks) =r/R - r radial position (parallel disks) - R disk radius (parallel disks) - t normalized time = t — /2 - t time - E elastic strain - P plate strain (displacement of top plate or disk divided by distance between plates or disks) - PR plate strain at disk edge (parallel disks) - 0 yield strain - E normalized elastic strain = E/0 - P normalized plate strain = P/0 - PR normalized plate strain at disk edge (parallel disks) = PR/0 - 0 normalized plate strain amplitude (parallel plates) =A/ 0 — normalized plate strain amplitude at disk edge (parallel disks) =A R/0 - phase shift between P andT (parallel plates) — phase shift between PR andM (parallel disks) - µ Bingham viscosity - stress - 0 yield stress - T normalized stress =/ 0 - frequency  相似文献   
13.
All previous experiments have suggested that Y(Co1−x Al x )2 is a weak itinerant ferromagnet for 0.12<x<0.20. The muon transverse damping rate (λ) increases rapidly near the Curie point forx≥0.155 and for one sample withx=0.145. The value of λ increases with decreasing temperature for other samples withx<0.155 but shows no feature at the Curie point.  相似文献   
14.
15.
The electrical resistivity of N-n-propylpyridinium-TCNQ2 (NPPy-TCNQ2) and N-n-butylpyridinium-TCNQn (NBPy-TCNQn) has been measured as a function of temperature and pressure. Phase transitions in these salts have been studied at high pressures. The transition temperature (Tc) in NPPy-TCNQ2 at atmospheric pressure increased with increasing pressure at the rate of dTc/dP = + 12.0 degkbar?1. The value of volume change calculated from the Clapeylon-Clausius relation was + 4.4 cm3 mol?1. The electrical resistivity along the a- and c-axis increased with increasing pressure below 7 kbar. This anomalous electrical behaviour is closely related to the crystal structure of NPPy-TCNQ2. The resistivity dropped sharply at about 11 kbar. This abrupt change may be due to a new pressure induced phase transition.The Tc of the NBPy-TCNQn increased remarkably with increasing pressure up to 0.7 kbar, above which the phase transition disappeared. The phase transitions of N-n-alkyl-substituted pyridinium TCNQ salts depend strongly on the nature of cations.  相似文献   
16.
The nuclear spin-lattice relaxation rate, 1/T1, has been measured in weak itinerant ferromagnets Y(Co1−xAlx)2. The temperature and magnetic field dependence of 1/T1T has been found to be well described by the self-consistent renormalization (SCR) theory of spin fluctuations. The parameters characterizing spin fluctuations in this system were estimated from NMR and magnetic measurements. The temperature dependence of susceptibility calculated from these parameters well reproduces the experimental results.  相似文献   
17.
On the basis of the results of thermal expansion and NMR measurements, the stability of Mn moments and spin fluctuations in RMn2 are discussed. It has been shown that the interatomic distance of RMn2 plays a crucial role in determining the Mn magnetism in RMn2.  相似文献   
18.
We investigated the magnetization of Yb0.8Y0.2InCu4 as a function of temperature down to 0.6 K, pressure up to 1.2 GPa, and magnetic field up to 9 T. The valence transition temperature of Yb0.8Y0.2InCu4 is lowered with applying pressure. At 0.8 GPa, collapse of the valence transition and ferromagnetic ordering occur almost simultaneously. The ferromagnetic phase at 1.2 GPa is characterized by a low Curie temperature of 1.7 K and an extremely small ordered moment of 0.05 micro(B) per Yb. Some effect of screening the ordered moment may play a key role in the ferromagnetism and the valence transition.  相似文献   
19.
We describe high-speed Fourier domain optical coherence tomography (OCT) using optical demultiplexers (ODs) for spectral dispersion. The OD enables separation of a narrow spectral band of 14 GHz (0.11 nm) from a broadband incident light at 256 different frequencies in 25.0 GHz intervals centered at 192.2 THz (1559.8 nm). OCT imaging of 60,000,000 axial scans per second was achieved through parallel signal acquisition using 256 balanced photoreceivers to simultaneously detect all the output signals from the ODs in a Fourier domain OCT system. OCT imaging at a 16 kHz frame rate, 1100 A-lines per frame, 3 mm depth range, and 23 microm resolution was demonstrated using a resonant scanner for lateral scanning.  相似文献   
20.
This paper describes a new design method to optimize thickness distribution of a multilayered structure which is located on the coupling surface between a structure and an acoustic cavity. The design method is based on the concept of the density approach in topology optimization incorporating a transfer matrix for a multilayered structure that includes a poroelastic media layer. The one-dimensional transfer matrix adopted here is an approximate representation addressing vibro-acoustic effects inherent in a multilayered structure, and balances calculation resources and desired accuracy. Applying the transfer matrix representation as boundary conditions on the coupling surface between a structure and an acoustic cavity, the modified equilibrium equation of the vibro-acoustic system is derived which is approximately but efficiently solved by the modal approach. In this study, the problem of minimizing the acoustic pressure within the cavity over the prescribed frequency range is formulated under the volume constraint of the poroelastic media layer. The continuous approximation of thickness distribution is assumed, and the thickness of the poroelastic media layer at each nodal point is chosen as design variables. Numerical results show that an acoustic response is significantly reduced by the optimal thickness distribution having a total weight equal to or less than that in the initial uniform thickness. These demonstrate that the proposed method is effective to design the optimal thickness distribution of a multilayered structure.  相似文献   
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