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Imaging polarimetry as a diagnostic tool

Published online by Cambridge University Press:  01 November 2008

Tim M. Gledhill*
Affiliation:
School of Physics, Astronomy & Mathematics, University of Hertfordshire, College Lane, Hatfield, AL10 9AB, UK email: t.gledhill@herts.ac.uk
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Abstract

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Some of the earliest polarimetric measurements made in astronomy were concerned with the polarization of the interstellar medium resulting from dust grains aligned in the Galactic magnetic field. More than 50 years later, polarimetry continues to be an important diagnostic of field structure on size scales ranging from planetary to galactic. The use of both linear and circular polarimetry at optical and infrared wavelengths can provide additional insights into the nature of dust particles, their alignment in magnetic fields and the field topology. Given the science benefits that polarimetry offers it is perhaps surprising that the continued existence of polarimetric facilities on current and next generation large telescopes needs to be ensured.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2009

References

Aitken, D. K., Smith, C. H., Moore, T. J. T, & Roche, P. F., 1995 MNRAS 273, 359CrossRefGoogle Scholar
Aitken, D. K., Smith, C. H., Moore, T. J. T., Roche, P. F., Fujiyoshi, T., & Wright, C. M. 1997, MNRAS 286, 85CrossRefGoogle Scholar
Aitken, D. K., Smith, C. H., Moore, T. J. T, & Roche, P. F., 1998, MNRAS 299, 743CrossRefGoogle Scholar
Aitken, D. K., Hough, J. H., Roche, P. F., Smith, C. H., & Wright, C. M. 2004, MNRAS 348, 279CrossRefGoogle Scholar
Aitken, D. K., Hough, J. H., & Chrysostomou, A. 2006, MNRAS 366, 491CrossRefGoogle Scholar
Bingham, R. G., McMullan, D., Pallister, W. S., White, C., Axon, D. J., & Scarrott, S. M. 1976, Nature 259, 463CrossRefGoogle Scholar
Buschermohle, M., Whittet, D. C. B., Chrysostomou, A., Hough, J. H., Lucas, P. W., Adamson, A. J., Whitney, B. A., & Wolff, M. J. 2005, ApJ 624, 821CrossRefGoogle Scholar
Chrysostomou, A., Hough, J. H., Burton, M. G., & Tamura, M. 1994, MNRAS 268, 325CrossRefGoogle Scholar
Chrysostomou, A., Menard, F., Gledhill, T. M., Clark, S., Hough, J. H., McCall, A., & Tamura, M. 1997, MNRAS 285, 750CrossRefGoogle Scholar
Chrysostomou, A., Gledhill, T. M., Menard, F., Hough, J. H., Tamura, M., & Bailey, J. A. 2000, MNRAS 312, 103CrossRefGoogle Scholar
Chrysostomou, A., Lucas, P. W., & Hough, J. H. 2007, Nature 450, 71CrossRefGoogle Scholar
Davis, L. Jr. & Greenstein, J. L. 1951, ApJ 114, 206CrossRefGoogle Scholar
Gledhill, T. M., Chrysostomou, A., & Hough, J. H. 1996, MNRAS 282, 1418CrossRefGoogle Scholar
Hall, J. S. & Mikesell, A. H. 1949, AJ 54, 187CrossRefGoogle Scholar
Hiltner, W. A. 1949, ApJ 109, 471CrossRefGoogle Scholar
Hiltner, W. A. 1951, ApJ 114, 241CrossRefGoogle Scholar
Hough, J. H. & Aitken, D. K. 2002, Proc. SPIE 4843, 200CrossRefGoogle Scholar
Hough, J. H. & Aitken, D. K. 2003, Journal of Quantitative Spectroscopy & Radiative Transfer 79-80, 733CrossRefGoogle Scholar
Hough, J. H. 2007, Journal of Quantitative Spectroscopy & Radiative Transfer 106, 122CrossRefGoogle Scholar
Kandori, R. et al. 2006, Proc. SPIE 6269, 159Google Scholar
Lucas, P. W., Hough, J. H., Bailey, J. A., Chrysostomou, A., Gledhill, T. M., & McCall, A. 2005, Origins of Life and Evolution of Biospheres, 35, 29CrossRefGoogle Scholar
Mathewson, D. S. & Ford, V. L. 1970, MemRAS 74, 139Google Scholar
McClean, I. S., Chuter, T. C., McCaughrean, M. J., & Rayner, J. T. 1986, Proc. SPIE 637, 430CrossRefGoogle Scholar
Minchin, N. R. et al. 1991, MNRAS 248, 715CrossRefGoogle Scholar
Öhman, Y. 1939, MNRAS 99, 624CrossRefGoogle Scholar
Packham, C., Hough, J. H., & Telesco, C. M. 2005, in: Adamson, A., Aspin, C., Davis, C. J. & Fujiyoshi, T. (eds.), Astronomical Polarimetry: Current Status and Future Directions, ASP Conference Series, Vol. 343, p. 38Google Scholar
Packham, C. & Jones, T. J. 2008, Proc. SPIE 7014, 193Google Scholar
Packham, C. et al. 2008, Proc. SPIE 7014, 86Google Scholar
Pallister, W. S., Perkins, H. G., Scarrott, S. M., Bingham, R. G., & Pilkington, J. D. H. 1977, MNRAS 178, 93pCrossRefGoogle Scholar
Pickering, E. C. 1889, American Academy of Arts and Sciences, Proceedings, New Series 13, p.294Google Scholar
Scarrott, S. M., White, C., Pallister, W. S., & Solinger, A. B. 1977, Nature 265, 32CrossRefGoogle Scholar
Scarrott, S. M., Warren-Smith, R. F., Pallister, W. S., Axon, D. J., & Bingham, R. G. 1983, MNRAS 204, 1163CrossRefGoogle Scholar
Smith, C. H., Moore, T. J. T., Aitken, D. K., & Fujiyoshi, T. 1997, PASA 14, 179CrossRefGoogle Scholar
Sugitani, K. et al. 2008, PASJ 59, 507CrossRefGoogle Scholar
Tinbergen, J. 2007, PASP 119, 1371CrossRefGoogle Scholar