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891.
Magnetic fluid is a kind of colloidal material with tunable microstructure and unique optical properties. The tunable magneto-optical modulation property of magnetic fluid under externally switchable magnetic field with various modulation periods is investigated theoretically and experimentally. The transitional modulation period (lower limit of the working frequency) between the square-like and oscillation-like modulation is achieved and found to be magnetic-field- and sample-concentration-dependent. The modulation mechanism is analyzed and ascribed to the dynamic microstructure of magnetic fluid under different modulation periods of external magnetic fields. The result of this work may be helpful for the pragmatic applications of magnetic fluid based on the square-like modulation. 相似文献
892.
Lihua Zhang Zhenyan Tang Shaolin Wang Ding Ding Mingshu Chen Huilin Wan 《Surface science》2012,606(19-20):1507-1511
The growth, structures, and vibrational properties of ultrathin manganese oxide films on Rh(111) had been investigated using high-resolution electron energy loss spectroscopy (HREELS), X-ray photoelectron spectroscopy (XPS), low energy electron diffraction (LEED), low energy ion scattering spectroscopy (LEIS) and Auger electron spectroscopy (AES). MnOx grew in a layer-by-layer fashion on the Rh(111) surface. HREELS phonon features and XPS binding energies showed that an OMnO like tri-layer formed initially. Which was stable on the Rh(111) surface with MnOx coverage less than one monolayer. At above one monolayer, Mn3O4 was preferred as indicated from a four-phonon feature peaked at 13.3, 39, 68 and 83 meV in HREELS. Higher temperature oxidation and annealing were found to improve the long-range order of the MnOx films. 相似文献
893.
Tran Minh Hau Rongfei Wang Dacheng Zhou Xue Yu Zhiguo Song Zhengwen Yang Yong Yang Xijia He Jianbei Qiu 《Journal of luminescence》2012,132(6):1353-1356
The Bi–Tm co-doped SiO2–Al2O3–La2O3 (SAL) glasses, which exhibited a broadband near-infrared (NIR) emission was investigated by the optical absorption and photoluminescence spectra. The super broadband near-infrared emission from 1000 to 2100 nm, which covered the whole O, E, S, C and L bands, was observed in the Bi–Tm co-doped samples, as a result of the overlap of the Bi-related emission band (centered at 1270 nm) and the emission from Tm3+ 3H4→3F4 transition (1440 nm) as well as Tm3+ 3F4→3H6 transition (1800 nm). Relative luminescence intensity at 1270, 1440 and 1800 nm wavelength varied depending on the mixing ratio of Bi and Tm and the full-width at half-maximum (FWHM) extending from 1000 to 1600 nm could be 400 nm. These results indicated that Bi–Tm co-doped SiO2–Al2O3–La2O3 glasses could provide potential applications in tunable lasers as well as the broadband optical amplifiers in WDM system. 相似文献
894.
Applicability of the angular properties of scatter elements as a tool to achieve improved slow light performance with small group velocity dispersion and large bandwidth in photonic crystal waveguides is investigated. A polyatomic photonic crystal waveguide, including two scatter elements with different geometrical shapes in each primitive cell, is proposed to investigate the feasibility of our method. Numerical results show that a versatile control of the dispersion relation of slow light modes, with large normalized delay-bandwidth products ranging from 0.2085 to 0.3394, can be obtained using a unique geometrical parameter. 相似文献
895.
896.
897.
898.
Fabrication, morphology and structural characterization of ordered single-crystal Ag nanowires 总被引:1,自引:0,他引:1
J. Zhang X. Wang X. Peng L. Zhang 《Applied Physics A: Materials Science & Processing》2002,75(4):485-488
Highly aligned Ag nanowires have been synthesized by dc electrodeposition within a hexagonal close-packed nanochannel anodic
aluminum oxide template. The pore diameter varies from 20 nm to 50 nm depending on the anodization voltage and temperature
for the two types of aqueous solutions, sulphuric and oxalic acids, respectively. The size and morphology of the Ag nanowire
arrays were measured by scanning electron microscopy and transmission electron microscopy. The images indicate that the highly
aligned Ag nanowires grow in the uniform nanochannels of the anodic alumina template and that the size of the nanowires depends
on the size of the nanochannels. X-ray diffraction, selected area electron diffraction pattern and high-resolution transmission
electron microscopy images show that the Ag nanowires are single-crystal. The temperature coefficient of resistivity (temperature
range from 4.2 K to 300 K) of the Ag nanowire arrays decreases with decreasing diameter of the nanowires.
Received: 5 November 2001 / Revised version: 12 March 2002 / Published online: 6 June 2002 相似文献
899.
J. Kurpeta G. Lhersonneau A. Płochocki J.C. Wang P. Dendooven A. Honkanen M. Huhta M. Oinonen H. Penttilä K. Peräjärvi J.R. Persson J. Äystö 《The European Physical Journal A - Hadrons and Nuclei》2002,13(4):449-460
The decay of neutron-rich isotope 113Ru obtained as on-line mass separated product of proton-induced fission has been investigated by γγ coincidence and spectrum
multiscaling measurements. Decay schemes for both low- and high-spin isomers of 113Ru have been constructed. The level scheme of 113Rh is considerably extended. Systematics of the lowest-lying rhodium levels is smooth. The picture of shape coexistence established
for neutron-rich Rh isotopes near-neutron midshell is confirmed with the observation of a K = 1/2 deformed band, with its 3/2+ state at 600 keV being the lowest-lying level and of probable 7/2+
and 5/2+
band members. A large fraction of β feeding is found to populate high-lying levels in 113Rh. The GT strength in 113Rum decay is significantly larger than for the decay of 113Rug and of lighter rhodium isotopes.
Received: 18 January 2001 / Accepted: 14 January 2002 相似文献
900.
The low temperature specific heat of Sm-Al-Co ternary
metallic glasses is investigated and a clear anomaly associated with
the Boson peak is identified. While this anomaly depends slightly on
the chemical composition, it has no dependence on external magnetic
field. To figure out the mechanism of the Boson peak, we interpret
the data within various model frameworks. Unlike earlier
work, our study shows that this Boson peak is mainly ascribed to an
additional T2 term of the specific heat, which may originate
from the quasi-two-dimensional and short-range ordered structure
units possibly existing in the metallic glasses. 相似文献