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Probing Magnetic Fields in Protostars with near-IR Polarimetry Barbara Whitney University of Wisconsin-Madison

Probing Magnetic Fields in Protostars with near-IR Polarimetry

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Probing Magnetic Fields in Protostars with near-IR Polarimetry. Barbara Whitney University of Wisconsin-Madison. K-band d = 140 pc 0.3” resolution. High-Resolution Observations (IRAS 04302+2247). Data from Lucas & Roche (1997). K-band d = 140 pc 0.3” resolution. - PowerPoint PPT Presentation

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Page 1: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

Probing Magnetic Fields in Protostars with near-IR Polarimetry

Barbara Whitney

University of Wisconsin-Madison

Page 2: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

High-Resolution Observations (IRAS 04302+2247)

Data from Lucas & Roche (1997)

K-bandd = 140 pc0.3” resolution

Page 3: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

Model for IRAS 04302+2247

Whitney & Wolff (2002)

K-bandd = 140 pc0.3” resolution

Page 4: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

K-band polarization maps, no B-field

Pl = -6.9% PV = 0Integrated polarization:

Page 5: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

Axial field (along z)

Pl = +2.7% PV = 0Integrated:

Whitney & Wolff 2002

Page 6: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

Galli-Shu + toroid field

Bj = exp[-z/a](Br2 + Bq

2)1/2

Page 7: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

V = 6%Pl = Q = -8%

Galli-Shu + toroid field

Integrated:

Page 8: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

Galli-Shu + toroid field

Bj = exp[-z/a](b rcyl)-1.5 (Br2 + Bq

2)1/2

Page 9: Probing Magnetic Fields in  Protostars with near-IR  Polarimetry

V = 3%Pl = Q = -16%

Galli-Shu + toroid field

Integrated: