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   <subfield code="a">Simulation of Counterflow Turbulence byVortex Filaments</subfield>
   <subfield code="h">[Elektronische Daten]</subfield>
   <subfield code="b">Statistics of Vortex Reconnections</subfield>
   <subfield code="c">[Makoto Tsubota, Hiroyuki Adachi]</subfield>
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   <subfield code="a">By using the vortex filament model with the full Biot-Savart law, we have succeeded for the first time in generating the statistically steady state of counterflow turbulence in superfluid 4He under periodic boundary conditions. This state exhibits the characteristic relation $L=\gamma^{2} v_{\mathit{ns}}^{2}$ between the line-length density L and the counterflow relative velocity v ns and there is quantitative agreement between the coefficient γ and some measured values. Since we obtained the realistic state of quantum turbulence, we will use the numerical data to study the statistical property. We focus on the statistics of vortex reconnections from about 350 events in our steady counterflow turbulence simulation, and characterize the dynamics by the minimum separation distance between two reconnecting vortices, which was used in the visualization experiments using the solid hydrogen tracer particles by Paoletti etal. From our analysis we may conclude that the quantized circulation is still the dominant controlling feature and obtains the statistics of the correction factor.</subfield>
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