Dissipative structures of diffuse molecular gas III -- Small-scale intermittency of intense velocity-shears
Pierre Hily-Blant (IRAM, Laog), Edith Falgarone (LERMA), Jerome Pety, (IRAM, Lerma)

TL;DR
This study investigates small-scale intermittency in turbulent molecular clouds using line centroid velocity statistics, revealing filamentary structures linked to velocity shear extrema and magnetic fields.
Contribution
It provides new evidence of small-scale filamentary velocity-shear structures associated with turbulence intermittency in molecular clouds, extending previous work with detailed statistical analysis.
Findings
Non-Gaussian tails in CVI PDFs grow at smaller lags
High-order structure functions deviate from Kolmogorov scaling in turbulent fields
Filamentary structures correlate with velocity-shear extrema and magnetic fields
Abstract
We further characterize the structures tentatively identified on thermal and chemical grounds as the sites of dissipation of turbulence in molecular clouds (Papers I and II). Our study is based on two-point statistics of line centroid velocities (CV), computed from three large 12CO maps of two fields. Probability density functions (PDF) of the CO line centroid velocity increments (CVI) over lags varying by an order of magnitude and structure functions of the line CV, up to the 6th order, are computed. We show that the line CV bear the three signatures of intermittency in a turbulent velocity field: (1) the non-Gaussian tails in the CVI PDF grow as the lag decreases, (2) the departure from Kolmogorov scaling of the high-order structure functions is more pronounced in the more turbulent field, (3) the positions contributing to the CVI PDF tails delineate narrow filamentary structures…
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