14 research outputs found
Forever changed: women's lived experiences of growing up with an incarcerated Father
University of Minnesota Ph.D. dissertation. August 2014. Major: Family Social Science. Advisors: Dr. Elizabeth Wieling,
Dr. William Doherty. 1 computer file (PDF); v, 223 pages, appendices A-D.This study explored the lived experiences of women who grew up with an incarcerated father. Thirteen women were interviewed using open-ended, semi-structured questions. The research design was based on Martin Heidegger's original philosophical construct of Hermeneutic Phenomenology and was guided by Max van Manen's six-step methodical structure approach to obtain meaning making from the participants regarding their lived experience (van Manen, 1997, 2014). Feminist framework is also incorporated to recognize the uniqueness of the female experience, which has often been neglected in research related to fathering. Findings reflected the thoughts, feelings and perceptions of participants in relation to how incarceration influenced their relationship with their father as well as how this phenomenon affected other dimensions of their life and their interpersonal relationships. The findings resulted in three overarching domains for paternal incarceration: 1) daughter's perception of parental response, 2) effect on daughter's personal well-being, and 3) influence on daughter's interpersonal relationships. Future implications for research and clinical practice are discussed
HST/NICMOS observations of the GLIMPSE9 stellar cluster
We present HST/NICMOS photometry, and low-resolution K-band spectra of the
GLIMPSE9 stellar cluster. The newly obtained color-magnitude diagram shows a
cluster sequence with H-Ks =1 mag, indicating an interstellar extinction
Aks=1.6\pm0.2 mag. The spectra of the three brightest stars show deep CO
band-heads, which indicate red supergiants with spectral type M1-M2. Two 09-B2
supergiants are also identified, which yield a spectrophotometric distance of
4.2\pm0.4 kpc. Presuming that the population is coeval, we derive an age
between 15 and 27 Myr, and a total cluster mass of 1600\pm400 Msun, integrated
down to 1 Msun. In the vicinity of GLIMPSE9 are several HII regions and SNRs,
all of which (including GLIMPSE 9) are probably associated with a giant
molecular cloud (GMC) in the inner galaxy. GLIMPSE9 probably represents one
episode of massive star formation in this GMC. We have identified several other
candidate stellar clusters of the same complex.Comment: 13 pages, 14 figures. accepted for publication in ApJ. A version with
high-resolution figures can be found at the following location
ftp://ftp.rssd.esa.int/pub/mmessine/ms.pdf New version with updated
reference
Massive stars in the Cl 1813-178 Cluster. An episode of massive star formation in the W33 complex
Young massive (M >10^4 Msun) stellar clusters are a good laboratory to study
the evolution of massive stars. Only a dozen of such clusters are known in the
Galaxy. Here we report about a new young massive stellar cluster in the Milky
Way. Near-infrared medium-resolution spectroscopy with UIST on the UKIRT
telescope and NIRSPEC on the Keck telescope, and X-ray observations with the
Chandra and XMM satellites, of the Cl 1813-178 cluster confirm a large number
of massive stars. We detected 1 red supergiant, 2 Wolf-Rayet stars, 1 candidate
luminous blue variable, 2 OIf, and 19 OB stars. Among the latter, twelve are
likely supergiants, four giants, and the faintest three dwarf stars. We
detected post-main sequence stars with masses between 25 and 100 Msun. A
population with age of 4-4.5 Myr and a mass of ~10000 Msun can reproduce such a
mixture of massive evolved stars. This massive stellar cluster is the first
detection of a cluster in the W33 complex. Six supernova remnants and several
other candidate clusters are found in the direction of the same complex.Comment: 11 Figures. Accepted for publication in Ap
Massive stars in the giant molecular cloud G23.3−0.3 and W41
Context. Young massive stars and stellar clusters continuously form in the Galactic disk, generating new Hii regions within their natal giant molecular clouds and subsequently enriching the interstellar medium via their winds and supernovae.Aims. Massive stars are among the brightest infrared stars in such regions; their identification permits the characterisation of the star formation history of the associated cloud as well as constraining the location of stellar aggregates and hence their occurrence as a function of global environment.Methods. We present a stellar spectroscopic survey in the direction of the giant molecular cloud G23.3−0.3. This complex is located at a distance of ~4–5 kpc, and consists of several Hii regions and supernova remnants.Results. We discovered 11 OfK+ stars, one candidate luminous blue variable, several OB stars, and candidate red supergiants. Stars with K-band extinction from ~1.3–1.9 mag appear to be associated with the GMC G23.3−0.3; O and B-types satisfying this criterion have spectrophotometric distances consistent with that of the giant molecular cloud. Combining near-IR spectroscopic and photometric data allowed us to characterize the multiple sites of star formation within it. The O-type stars have masses from ~25–45 M⊙, and ages of 5–8 Myr. Two new red supergiants were detected with interstellar extinction typical of the cloud; along with the two RSGs within the cluster GLIMPSE9, they trace an older burst with an age of 20–30 Myr. Massive stars were also detected in the core of three supernova remnants – W41, G22.7−0.2, and G22.7583−0.4917.Conclusions. A large population of massive stars appears associated with the GMC G23.3−0.3, with the properties inferred for them indicative of an extended history of stars formation
Massive Stars In The W33 Giant Molecular Complex
Rich in H II regions, giant molecular clouds are natural laboratories to study massive stars and sequential star formation. The Galactic star-forming complex W33 is located at = ∼ ◦ l 12.8 and at a distance of 2.4 kpc and has a size of ≈10 pc and a total mass of ≈(0.8−8.0) × 105 M⊙. The integrated radio and IR luminosity of W33—when combined with the direct detection of methanol masers, the protostellar object W33A, and the protocluster embedded within the radio source W33 main—mark the region as a site of vigorous ongoing star formation. In order to assess the long-term star formation history, we performed an infrared spectroscopic search for massive stars, detecting for the first time 14 early-type stars, including one WN6 star and four O4–7 stars. The distribution of spectral types suggests that this population formed during the past ∼2–4 Myr, while the absence of red supergiants precludes extensive star formation at ages 6–30 Myr. This activity appears distributed throughout the region and does not appear to
have yielded the dense stellar clusters that characterize other star-forming complexes such as Carina and G305. Instead, we anticipate that W33 will eventually evolve into a loose stellar aggregate, with Cyg OB2 serving as a useful, albeit richer and more massive, comparator. Given recent distance estimates, and despite a remarkably similar stellar population, the rich cluster Cl 1813–178 located on the northwest edge of W33 does not appear to be physically associated with W33