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相关论文: Multiwavelength WHAM Observations of Extra-planar …

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We report on observations of several optical emission lines toward a variety of newly revealed faint, large-scale Halpha-emitting regions in the Galaxy. The lines include [NII] 6583, [NII] 5755, [SII] 6716, [OIII] 5007, and HeI 5876…

天体物理学 · 物理学 2011-02-11 G. J. Madsen , R. J. Reynolds , L. M. Haffner

The Wisconsin H-Alpha Mapper (WHAM) is a new facility dedicated to the study of faint optical emission lines from diffuse interstellar gas. During its first 18 months of operation, WHAM carried out a survey of the interstellar H-alpha…

天体物理学 · 物理学 2007-05-23 R. J. Reynolds , L. M. Haffner , S. L. Tufte

The Wisconsin H-Alpha Mapper (WHAM) has completed a velocity-resolved map of diffuse H-alpha emission of the entire northern sky, providing the first comprehensive picture of both the distribution and kinematics of diffuse ionized gas in…

天体物理学 · 物理学 2015-06-24 G. J. Madsen

The extremely faint, temperature sensitive ``auroral'' emission line [N II] 5755 has been detected from the low density ionized gas along the sight line toward l = 130.0, b = -7.5 using the Wisconsin H-Alpha Mapper (WHAM). The intensity of…

天体物理学 · 物理学 2014-10-13 R. J. Reynolds , N. C. Sterling , L. M. Haffner , S. L. Tufte

A large portion of the Galaxy (l = 123 deg to 164 deg, b = -6 deg to -35 deg), which samples regions of the Local (Orion) spiral arm and the more distant Perseus arm, has been mapped with the Wisconsin H-Alpha Mapper (WHAM) in the H-Alpha,…

天体物理学 · 物理学 2008-11-26 L. M. Haffner , R. J. Reynolds , S. L. Tufte

We assess the possibility to detect the warm-hot intergalactic medium (WHIM) in emission and to characterize its physical conditions and spatial distribution through spatially resolved X-ray spectroscopy, in the framework of the recently…

Wisconsin H-Alpha Mapper (WHAM) observations of H-Alpha and [S II]$\lambda6716$ emission are used to trace the vertical distribution and physical conditions of the warm ionized medium (WIM) along the Sagittarius-Carina arm. CO emission,…

星系天体物理 · 物理学 2017-03-29 Dhanesh Krishnarao , L. Matthew Haffner , Robert A. Benjamin , Alex S. Hill , Kathleen A. Barger

The Wisconsin H-Alpha Mapper (WHAM) has surveyed the distribution and kinematics of ionized gas in the Galaxy above declination -30 degrees. The WHAM Northern Sky Survey (WHAM-NSS) has an angular resolution of one degree and provides the…

天体物理学 · 物理学 2009-11-10 L. M. Haffner , R. J. Reynolds , S. L. Tufte , G. J. Madsen , K. P. Jaehnig , J. W. Percival

The Wisconsin H-Alpha Mapper (WHAM) has completed a one-degree resolution, velocity-resolved northern sky survey of H-alpha emission from our Galaxy. The unprecedented sensitivity of the instrument and accurate spectral subtraction of…

天体物理学 · 物理学 2007-05-23 G. J. Madsen , L. M. Haffner , R. J. Reynolds

We present Wisconsin H-Alpha Mapper [S II] {\lambda}6716 and H{\alpha} spectroscopic maps of the warm ionized medium (WIM) in the Scutum-Centaurus Arm at Galactic longitudes 310{\deg} < l < 345{\deg}. Using extinction-corrected H{\alpha}…

星系天体物理 · 物理学 2014-05-12 Alex S. Hill , Robert A. Benjamin , L. Matthew Haffner , Martin Gostisha , Kathleen A. Barger

H-alpha emission from neutral halo clouds probes the radiation and hydrodynamic conditions in the halo. Armed with such measurements, we can explore how radiation escapes from the Galactic plane and how infalling gas can survive a trip…

星系天体物理 · 物理学 2016-06-09 L. M. Haffner , A. K. Duncan , S. M. Hoffman , G. J. Madsen , A. S. Hill , R. J. Reynolds

The nature of turbulence in the warm ionized component of the interstellar medium (WIM) can be investigated using Fabry-Perot spectroscopy of optical emission lines. The H-alpha intensity provides the emission measure (EM) along a line of…

天体物理学 · 物理学 2007-05-23 S. L. Tufte , R. J. Reynolds , L. M. Haffner

We present an analysis of the distribution of H-alpha emission measures for the warm ionized medium (WIM) of the Galaxy using data from the Wisconsin H-Alpha Mapper (WHAM) Northern Sky Survey. Our sample is restricted to Galactic latitudes…

We present velocity-resolved maps taken with the Wisconsin H-Alpha Mapper (WHAM) in H{\alpha}, [S II] {\lambda}6716, and [N II] {\lambda}6583 around the well-known O8 III star {\lambda} Ori A (HD 36861) (l = 185{\deg} to 205{\deg}, b =…

星系天体物理 · 物理学 2016-06-09 M. Sahan , L. M. Haffner

We present model calculations of ionization fractions for elements in the warm (log T = 4), low-density photoionized interstellar medium (WIM) of the Milky Way. We model the WIM as a combination of overlapping low-excitation H II regions…

天体物理学 · 物理学 2009-10-31 Kenneth R. Sembach , J. Christopher Howk , Robert S. I. Ryans , Francis P. Keenan

Ionized interstellar gas is an important component of the interstellar medium and its lifecycle. The recent evidence for a widely distributed highly ionized warm interstellar gas with a density intermediate between the warm ionized medium…

The detailed observations of the diffuse ionized gas through the emission lines H$\alpha$, [NII], and [SII] in the Perseus Arm of our Galaxy by the Wisconsin H$\alpha$ Mapper (WHAM)--survey challenge photoionization models. They have to…

天体物理学 · 物理学 2009-11-13 T. Elwert , R. -J. Dettmar

The Warm Ionized Medium (WIM), also referred to as Diffuse Ionized Gas, contains most of the mass of interstellar medium in ionized form, contributing as much as 30% of the total atomic gas mass in the solar neighborhood. The advent of CCDs…

天体物理学 · 物理学 2015-06-24 Rene A. M. Walterbos

Most of the ionized mass in the Milky Way is in the Warm Ionized Medium (WIM) and not in the bright H~II regions. The WIM is traced by dispersion measure and has been extensively studied in recombination lines (primarily, H$\alpha$) and…

星系天体物理 · 物理学 2025-07-29 S. R. Kulkarni , S. Noll , W. Kausch , Soumyadeep Bhattacharjee

We have used the WHAM H_alpha survey and Leiden/Dwingeloo HI data to decompose the Far-infrared emission (from 100 to 1000 micron) at high Galactic latitude into components associated with the Warm Ionised Medium (WIM) and the Warm Neutral…

天体物理学 · 物理学 2011-03-28 G. Lagache , L. M. Haffner , R. J. Reynolds , S. L. Tufte
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