We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentation process of cores within the filamentary infrared dark cloud G34.43+00.24. We observe the magnetic field morphology across G34.43, traced with thermal dust polarization at 350 μm with an angular resolution of 10'' (0.18 pc), and compare with the kinematics obtained from N2H+ across the filament. We derive local velocity gradients from N2H+, tracing motion in the plane of sky, and compare with the observed local B field orientations in the plane of sky. The B field orientations are found to be perpendicular to the long axis of the filament toward the MM1 and MM2 ridge, suggesting that the B field can guide material toward the filament. Toward...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 μm polarized dust emission observed wit...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 μm polarized dust emission observed wit...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
How important is the magnetic (B-) field when compared to gravity and turbulence in the star-formati...
Context. Magnetic fields are predicted to play a significant role in the formation of filamentary st...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 mu m polarized dust emission observed w...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 mu m polarized dust emission observed w...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 mu m polarized dust emission observed w...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 μm polarized dust emission observed wit...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 μm polarized dust emission observed wit...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
We investigate the interplay between magnetic (B) field, gravity, and turbulence in the fragmentatio...
How important is the magnetic (B-) field when compared to gravity and turbulence in the star-formati...
Context. Magnetic fields are predicted to play a significant role in the formation of filamentary st...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 mu m polarized dust emission observed w...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 mu m polarized dust emission observed w...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 mu m polarized dust emission observed w...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 μm polarized dust emission observed wit...
Magnetic field plays a crucial role in shaping molecular clouds and regulating star formation, yet t...
We present the B-fields mapped in IRDC G34.43+0.24 using 850 μm polarized dust emission observed wit...