Hostname: page-component-7bb8b95d7b-s9k8s Total loading time: 0 Render date: 2024-09-12T08:26:21.990Z Has data issue: false hasContentIssue false

The Arcetri Spectral Code for Optically-Thin Plasmas

Published online by Cambridge University Press:  12 April 2016

Brunella C. Monsignori Fossi
Affiliation:
Arcetri Astrophysical Observatory, Florence, Italy
Massimo Landini
Affiliation:
Department of Astronomy and Space Science, University of Florence, Italy

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

The Arcetri-95 spectral code for optically thin plasmas computes the continuum and line emission of the ions of the most abundant elements. It includes the most updated atomic models and the main atomic processes for ions from Fe IX to Fe XXIII and for ions of the Belike, C-like, and N-like isoelectronic sequences. The power emitted per unit emission measure is produced as a function of temperature and density.

Comparison with observations requires the knowledge of the differential emission measure (DEM) as a function of temperature. A numerical code evaluates the best DEM distribution that satisfies observations and theoretical predictions. The spectral code together with the DEM code allows to compute synthetic spectra for any specified temperature distribution model of the plasma.

Type
XIII. Plasma Diagnostics
Copyright
Copyright © Kluwer 1996

References

Aggarwal, K.M. 1991, ApJS, 77, 677 CrossRefGoogle Scholar
Arnaud, M. & Rothenflug, R. 1985, A&AS, 60, 425 Google Scholar
Arnaud, M. & Raymond, J.C. 1992, A&AS, 398, 394.Google Scholar
Behring, W.E., Cohen, L. & Feldman, U. 1972, ApJ, 175, 493 CrossRefGoogle Scholar
Behring, W.E., Cohen, L. Feldman, U., & Doschek, G.A. 1976, ApJ, 203, 521 CrossRefGoogle Scholar
Bhatia, A.K. & Doschek, G.A. 1992, Atomic Data Nuclear Data Tables, 52, 1 CrossRefGoogle Scholar
Bhatia, A.K. & Doschek, G.A. 1993a, Atomic Data Nuclear Data Tables, 55, 315 CrossRefGoogle Scholar
Bhatia, A.K. & Doschek, G.A. 1993b, Atomic Data Nuclear Data Tables, 55, 281 CrossRefGoogle Scholar
Bhatia, A.K. & Doschek, G.A. 1993c, Atomic Data Nuclear Data Tables, 53, 195 CrossRefGoogle Scholar
Bhatia, A.K. & Doschek, G.A. 1995, Atomic Data Nuclear Data Tables, in pressGoogle Scholar
Bhatia, A.K., Feldman, U., & Seely, J.F. 1986, Atomic Data Nuclear Data Tables, 35, 319 CrossRefGoogle Scholar
Bhatia, A.K. & Kastner, S.O. 1993a, ApJ, 408, 744 CrossRefGoogle Scholar
Bhatia, A.K. & Kastner, S.O. 1993b, Atomic Data Nuclear Data Tables, 54, 133 CrossRefGoogle Scholar
Bhatia, A.K. & Mason, H.E. 1980a, A&A, 83, 380 Google Scholar
Bhatia, A.K. & Mason, H.E. 1980b, MNRAS, 190, 925 CrossRefGoogle Scholar
Bhatia, A.K. & Mason, H.E. 1981, A&A, 103, 324 Google Scholar
Bhatia, A.K. & Mason, H.E. 1986, A&A, 155, 413 Google Scholar
Bhatia, A.K., Seely, J.F., & Feldman, U. 1987, Atomic Data Nuclear Data Tables, 36, 453 CrossRefGoogle Scholar
Brickhouse, N.S., Edgar, R., Kaastra, J., Kallman, T., Liedahl, D., Masai, K., Monsignori Fossi, B.C., Petre, R., Sanders, W., Savin, D.W., & Stern, R. 1995a, Legacy, 6 Google Scholar
Brickhouse, N.S., Raymond, J.C., & Smith, B.W. 1995b, ApJ, in pressGoogle Scholar
Bromage, G.E., Cowan, R.D., & Fawcett, B.C. 1977, Phys. Scripta, 15, 177 CrossRefGoogle Scholar
Bromage, G.E., Cowan, R.D., & Fawcett, B.C. 1978, Monthly Notices Roy. Astron. Soc, 183, 19 CrossRefGoogle Scholar
Burgess, A. & Tully, J.A. 1992, A&A, 254, 436.Google Scholar
Christensen, R.B., Norcross, D.W., & Pradhan, A.K. 1985, Physical Review A, 32, 93 CrossRefGoogle Scholar
Corliss, C. & Sugar, J. 1985, in Spectroscopie Data for Iron, ed. Wiese, W.L. Google Scholar
Cornille, M., Debau, J., Loulergue, M., Bely-Debau, F., & Faucher, P. 1992, A&A, 259, 669 Google Scholar
Doschek, G.A., Feldman, U., Van Hoosier, M.E., & Bartoe, J.D.F. 1976, ApJS, 31, 417 CrossRefGoogle Scholar
Doyle, J.G. & Keenan, T.P. 1992, A&A, 264, 173 Google Scholar
Dufton, P.L. & Kingston, A.E. 1991, Physica Scripta, 43, 386 CrossRefGoogle Scholar
Dupree, A.K., Brickhouse, N.S., Doschek, G.A., Green, J.C., & Raymond, J.C. 1993, ApJ, 418, L41 CrossRefGoogle Scholar
Edlen, B. 1983, Physica Scripta, 28, 483 CrossRefGoogle Scholar
Edlen, B. 1984, Physica Scripta, 30, 135 CrossRefGoogle Scholar
Edlen, B. 1985, Physica Scripta, 31, 345 CrossRefGoogle Scholar
Fawcett, D.R. & Mason, H.E. 1989, Atomic Data Nuclear Data Tables, 43, 245 CrossRefGoogle Scholar
Fawcett, B.C. & Mason, H.E. 1991, Atomic Data Nuclear Data Tables, 47, 17 CrossRefGoogle Scholar
Flower, D.R. 1977a, A&A, 54, 163 Google Scholar
Flower, D.R. 1977b, A&A, 56, 451 Google Scholar
Froese Fisher, C. & Liu, B. 1986, Atomic Data Nuclear Data Tables, 34, 261 CrossRefGoogle Scholar
Gaetz, T.J. & Salpeter, E.E. 1983, ApJS, 52, 155 CrossRefGoogle Scholar
Kastner, S.O., Neupert, W.M., & Swartz, M. 1974, ApJ, 191, 261 CrossRefGoogle Scholar
Kato, T. 1976, ApJS, 30, 394 CrossRefGoogle Scholar
Lang, J. Ed. 1994, Atomic Data Nuclear Data Tables, 57, no 1 Google Scholar
Landini, M. & Monsignori Fossi, B.C. 1970, A&A, 6,468 Google Scholar
Landini, M. & Monsignori Fossi, B.C. 1990, A&AS, 82, 229 Google Scholar
Landini, M. & Monsignori Fossi, B.C. 1991, A&AS, 91, 183 Google Scholar
Landini, M. & Monsignori Fossi, B.C. 1993, A&A, 275, L17 Google Scholar
Loulergue, M., Mason, H.E., Nussbaumer, H., & Storey, P.J. 1985, A&A, 150, 246 Google Scholar
Masai, K. 1994, ApJ, 437, 770 CrossRefGoogle Scholar
Mason, H.E. 1975, MNRAS, 170, 651 CrossRefGoogle Scholar
Mason, H.E. Doschek, G.A., Feldman, U., & Bhatia, A.K. 1979, A&A, 73, 74 Google Scholar
Mason, H.E. & Monsignori Fossi, B.C. 1994, Astron. Astroph. Rev., 6, 123 CrossRefGoogle Scholar
Mc, Kim, Melville, J. & Berger, R. 1965, Planet. Space Sc, 13, 1131 Google Scholar
Mewe, R. 1972, Solar Phys., 22, 459 CrossRefGoogle Scholar
Mewe, R., Gronescheld, E.H.B.M., & Van Den Oord, G.H.J. 1985, A&AS, Ser., 62, 197 Google Scholar
Mewe, R., Kaastra, J.S., Schrijver, C.J., Van den Oord, , & Alkemade, F.J.M. 1995, A&A, in pressGoogle Scholar
Monsignori Fossi, B.C. & Landini, M. 1991, Adv. Space Res, 11(1), 281 CrossRefGoogle Scholar
Monsignori Fossi, B.C. & Landini, M. 1994a, Solar Phys, 152, 81 CrossRefGoogle Scholar
Monsignori Fossi, B.C. & Landini, M. 1994b, Atomic Data Nuclear Data Tables, 57, 125 CrossRefGoogle Scholar
Monsignori Fossi, B.C. & Landini, M. 1994c, A&A, 284, 900 Google Scholar
Monsignori Fossi, B.C., Landini, M., Fruscione, A., & Dupuis, J. 1995a, ApJ, in pressGoogle Scholar
Monsignori Fossi, B.C., Landini, M., Drake, J.J., & Cully, S.L. 1995b, A&A, in pressGoogle Scholar
Muhlethaler, H.P. & Nussbaumer, H. 1976, A&A, 48, 109 Google Scholar
Nussbaumer, H., & Storey, P.J. 1979, A&A, 74, 244 Google Scholar
Pradhan, A.K. 1988, Atomic Data Nuclear Data Tables, 40, 335 CrossRefGoogle Scholar
Raymond, J.C. & Smith, B.W. 1977, ApJS, 35, 419 CrossRefGoogle Scholar
Sampson, D.H., Zhang, H.L., & Fontes, C.J. 1990, Atomic Data Nuclear Data Tables, 44, 210 CrossRefGoogle Scholar
Stern, R., Wang, R., Bowyer, S. 1978, ApJS, 37, 195 CrossRefGoogle Scholar
Stern, R.A., Lemen, J.R., Schmitt, J.H.M.M., & Pye, J.P. 1995, ApJ, in pressGoogle Scholar
Tayal, S.S., & Henry, R.J.W. 1986, ApJ, 302, 200 CrossRefGoogle Scholar
Tayal, S.S., Henry, R.J.W., & Pradhan, A. 1987, ApJ, 319, 951 CrossRefGoogle Scholar
Tayal, S.S., & Henry, R.J.W. 1988, ApJ, 329, 1023 CrossRefGoogle Scholar
Thomas, R.J. & Neupert, W.M. 1994, ApJ, 91, 461 Google Scholar
Wiese, W.L., Smith, M.W., & Glennon, B.M. 1966, Atomic Trans. Prob., 1 NBSGoogle Scholar
Young, P.R., Mason, H.E., & Thomas, R.J. 1995, in Proc. 3rd SOHO Workshop, in pressGoogle Scholar
Zhang, H. & Sampson, D.H. 1992, Atomic Data Nuclear Data Tables, 52, 143 CrossRefGoogle Scholar