1,923 research outputs found
Two-dimensional Id\`eles with Cycle Module Coefficients
We give a theory of id\`eles with coefficients for smooth surfaces over a
field. It is an analogue of Beilinson/Huber's theory of higher ad\`eles, but
handling cycle module sheaves instead of quasi-coherent ones. We prove that
they give a flasque resolution of the cycle module sheaves in the Zariski
topology. As a technical ingredient we show the Gersten property for cycle
modules on equicharacteristic complete regular local rings, which might be of
independent interest.Comment: major change in exposition, streamlined, removed incorrect claim
about product map (many thanks to S. Gorchinskiy for pointing this out to
me), bibliography update
Manufacture of Two-layers and Double-sided Iron Castings with Differential Structure and Properties
The paper proposes a new method of production of bilayer and double-sided castings with differentiated structure and properties using the technology of in-mold modification of the initial melt, smelted in a single melting furnace, which ensures formation of hard wear-resistant white iron as the working layer, and formation of ductile shock-resistant cast iron with nodular graphite as the core or the mounting part. Numerous laboratory studies confirm the feasibility of the proposed method and provide conditions ensuring differentiation of structure and properties in local parts or layers of castings. The prospects of the method for manufacturing a wide range of industrial castings are indicated
Modeling of long-time thermal magnetization decay in interacting granular magnetic materials
We present a general method to evaluate the long-time magnetization decay in granular magnetic systems. The method is based on Arrhenius-Neel kinetics with the evaluation of the energy barriers in a multidimensional space. To establish a possible reversal mode, we suggest the use of Metropolis Monte Carlo and for the mode statistical sampling-the kinetic Monte Carlo criteria. The examples considered include long-time magnetization decay in CoCrPt low-magnetization longitudinal recording media and in a collection of Co particles with different concentrations
MANUFACTURE OF TWO-LAYERS AND DOUBLE-SIDED IRON CASTINGS WITH DIFFERENTIAL STRUCTURE AND PROPERTIES
The paper proposes a new method of production of bilayer and double-sided castings with differentiated structure and properties using the technology of in-mold modification of the initial melt, smelted in a single melting furnace, which ensures formation of hard wear-resistant white iron as the working layer, and formation of ductile shock-resistant cast iron with nodular graphite as the core or the mounting part. Numerous laboratory studies confirm the feasibility of the proposed method and provide conditions ensuring differentiation of structure and properties in local parts or layers of castings. The prospects of the method for manufacturing a wide range of industrial castings are indicated
Implementation of the "hyperdynamics of infrequent events" method for acceleration of thermal switching dynamics of magnetic moments
For acceleration of the calculations of thermal magnetic switching, we report the use of the Voter method, recently proposed in chemical physics (also called "hyperdynamics of the infrequent events"). The method consists of modification of the magnetic potential so that the transition state remains unchanged. We have found that the method correctly describes the mean first passage time even in the case of small damping (precessional case) and for an oblique angle between the anisotropy and the field directions. Due to the costly evaluation of the lowest energy eigenvalue, the actual acceleration depends on its fast computation. In the current implementation, it is limited to intermediate time scale and to small system size
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