2001Unpublished venueRequires access

SEYFERT-TYPE DEPENDENCES OF NARROW EMISSION-LINE RATIOS AND PHYSICAL PROPERTIES OF HIGH-IONIZATION NUCLEAR EMISSION-LINE REGIONS IN SEYFERT GALAXIES

Tohru Nagao, Takashi Murayama, Yoshiaki Taniguchi

Open publisher page 15 citations

Abstract

In order to examine how narrow emission-line flux ratios depend on the Seyfert type, we compiled various narrow emission-line flux ratios of 355 Seyfert galaxies from the literature. We present in this paper that the intensity of the high-ionization emission lines, [Fe vii]λ6087, [Fe x]λ6374 and [Ne v]λ3426, tend to be stronger in Seyfert 1 galaxies than in Seyfert 2 galaxies. In addition to these lines, [O iii]λ4363 and [Ne iii]λ3869, whose ionization potentials are not high (< 100 eV), but whose critical densities are significantly high ( ∼> 10 7 cm −3), also exhibit the same tendency. On the other hand, the emission-line flux ratios among low-ionization emission lines do not show such a tendency. We point out that the most plausible interpretation of these results is that the high-ionization emission lines arise mainly from highly-ionized, dense gas clouds, which are located very close to nuclei, and thus can be hidden by dusty tori. To examine the physical properties of these highly-ionized dense gas clouds, photoionization model calculations were performed. As a result, we find that the hydrogen density and the ionization parameter of these highly-ionized dense gas clouds are constrained to be nH> 10 6 cm −3 and U> 10 −2, respectively. These lower limits are almost independent both from the metallicity of gas clouds and from the spectral energy distribution of the nuclear ionizing radiation.

About this research paper

What this paper is about

In order to examine how narrow emission-line flux ratios depend on the Seyfert type, we compiled various narrow emission-line flux ratios of 355 Seyfert galaxies from the literature. We present in this paper that the intensity of the high-ionization emission lines, [Fe vii]λ6087, [Fe x]λ6374 and [Ne v]λ3426, tend to be stronger in Seyfert 1 galaxies than in Seyfert 2 galaxies. In addition to these lines, [O iii]λ4363 and [Ne iii]λ3869, whose ionization potentials are not high (< 100 eV), but whose critical densities are significantly high ( ∼> 10 7 cm −3), also exhibit the same tendency. On the other hand, the emission-line flux ratios among low-ionization emission lines do not show such a tendency. We point out that the most plausible interpretation of these results is that the high-ionization emission lines arise mainly from highly-ionized, dense gas clouds, which are located very close to nuclei, and thus can be hidden by dusty tori. To examine the physical properties of these highly-ionized dense gas clouds, photoionization model calculations were performed. As a result, we find that the hydrogen density and the ionization parameter of these highly-ionized dense gas clouds are constrained to be nH> 10 6 cm −3 and U> 10 −2, respectively. These lower limits are almost independent both from the metallicity of gas clouds and from the spectral energy distribution of the nuclear ionizing radiation.

Why it matters

OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In order to examine how narrow emission-line flux ratios depend on the Seyfert type, we compiled various narrow emission-line flux ratios of 355 Seyfert galaxies from the literature. We present in this paper that the intensity of the high-ionization emission lines, [Fe vii]λ6087, [Fe x]λ6374 and [Ne v]λ3426, tend to be stronger in Seyfert 1 galaxies than in Seyfert 2 galaxies. In addition to these lines, [O iii]λ4363 and [Ne iii]λ3869, whose ionization potentials are not high (< 100 eV), but whose critical densities are significantly high ( ∼> 10 7 cm −3), also exhibit the same tendency. On the other hand, the emission-line flux ratios among low-ionization emission lines do not show such a tendency. We point out that the most plausible interpretation of these results is that the high-ionization emission lines arise mainly from highly-ionized, dense gas clouds, which are located very close to nuclei, and thus can be hidden by dusty tori. To examine the physical properties of these highly-ionized dense gas clouds, photoionization model calculations were performed. As a result, we find that the hydrogen density and the ionization parameter of these highly-ionized dense gas clouds are constrained to be nH> 10 6 cm −3 and U> 10 −2, respectively. These lower limits are almost independent both from the metallicity of gas clouds and from the spectral energy distribution of the nuclear ionizing radiation.

Key concepts: Physics, Galaxy, Ionization, Photoionization, Emission spectrum, Astrophysics, Line (geometry), Active galactic nucleus

Related papers

Back to paper searchBrowse research topicsOriginal source
SEYFERT-TYPE DEPENDENCES OF NARROW EMISSION-LINE RATIOS AND PHYSICAL PROPERTIES OF HIGH-IONIZATION NUCLEAR EMISSION-LINE REGIONS IN SEYFERT GALAXIES — Research Paper | ScholarLens