Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 7 de 7
Filter
Add more filters










Database
Language
Publication year range
1.
Nature ; 565(7739): 324-327, 2019 01.
Article in English | MEDLINE | ID: mdl-30651614

ABSTRACT

Long γ-ray bursts are associated with energetic, broad-lined, stripped-envelope supernovae1,2 and as such mark the death of massive stars. The scarcity of such events nearby and the brightness of the γ-ray burst afterglow, which dominates the emission in the first few days after the burst, have so far prevented the study of the very early evolution of supernovae associated with γ-ray bursts3. In hydrogen-stripped supernovae that are not associated with γ-ray bursts, an excess of high-velocity (roughly 30,000 kilometres per second) material has been interpreted as a signature of a choked jet, which did not emerge from the progenitor star and instead deposited all of its energy in a thermal cocoon4. Here we report multi-epoch spectroscopic observations of the supernova SN 2017iuk, which is associated with the γ-ray burst GRB 171205A. Our spectra display features at extremely high expansion velocities (around 115,000 kilometres per second) within the first day after the burst5,6. Using spectral synthesis models developed for SN 2017iuk, we show that these features are characterized by chemical abundances that differ from those observed in the ejecta of SN 2017iuk at later times. We further show that the high-velocity features originate from the mildly relativistic hot cocoon that is generated by an ultra-relativistic jet within the γ-ray burst expanding and decelerating into the medium that surrounds the progenitor star7,8. This cocoon rapidly becomes transparent9 and is outshone by the supernova emission, which starts to dominate the emission three days after the burst.

2.
Andrologia ; 48(9): 849-854, 2016 Nov.
Article in English | MEDLINE | ID: mdl-27739143

ABSTRACT

Goal of this study was to investigate differences in quality of life in men contingent upon various fertility treatment stages, infertility causes and adoption of roles. A quantitative study with n = 115 men in three German fertility centres was devised. Participants completed a standardised, fertility-specific questionnaire devised for men (TLMK), sociodemographic and role items. Men having experienced severe medical conditions, for example cancer, reported significant higher quality of life compared to men with other infertility reasons [F(1,56) = 12.77, P = 0.001]. Furthermore, allocating participants into distinctive groups by means of kind and duration of treatment revealed significant group differences [F(2,111) = 4.94, P = 0.009], with quality of life decreasing with the use of more invasive fertility methods. A higher satisfaction with life was also stated by men adopting many tasks in the treatment process. The high quality of life displayed by men having experienced severe medical conditions contains valuable and far-reaching information about possible resilience factors that need to be researched more in detail. The finding of decreasing quality of life in men with the use of more invasive methods in treatment applies for increased psychosocial services in fertility clinics.


Subject(s)
Infertility, Male/psychology , Infertility, Male/therapy , Adult , Female , Gender Identity , Humans , Infertility, Male/etiology , Male , Quality of Life/psychology , Reproductive Behavior/psychology , Social Class , Stress, Psychological , Surveys and Questionnaires
3.
Nature ; 480(7375): 72-4, 2011 Nov 30.
Article in English | MEDLINE | ID: mdl-22129726

ABSTRACT

Long γ-ray bursts (GRBs) are the most dramatic examples of massive stellar deaths, often associated with supernovae. They release ultra-relativistic jets, which produce non-thermal emission through synchrotron radiation as they interact with the surrounding medium. Here we report observations of the unusual GRB 101225A. Its γ-ray emission was exceptionally long-lived and was followed by a bright X-ray transient with a hot thermal component and an unusual optical counterpart. During the first 10 days, the optical emission evolved as an expanding, cooling black body, after which an additional component, consistent with a faint supernova, emerged. We estimate its redshift to be z = 0.33 by fitting the spectral-energy distribution and light curve of the optical emission with a GRB-supernova template. Deep optical observations may have revealed a faint, unresolved host galaxy. Our proposed progenitor is a merger of a helium star with a neutron star that underwent a common envelope phase, expelling its hydrogen envelope. The resulting explosion created a GRB-like jet which became thermalized by interacting with the dense, previously ejected material, thus creating the observed black body, until finally the emission from the supernova dominated. An alternative explanation is a minor body falling onto a neutron star in the Galaxy.

4.
Science ; 333(6039): 199-202, 2011 Jul 08.
Article in English | MEDLINE | ID: mdl-21680811

ABSTRACT

Variable x-ray and γ-ray emission is characteristic of the most extreme physical processes in the universe. We present multiwavelength observations of a unique γ-ray-selected transient detected by the Swift satellite, accompanied by bright emission across the electromagnetic spectrum, and whose properties are unlike any previously observed source. We pinpoint the event to the center of a small, star-forming galaxy at redshift z = 0.3534. Its high-energy emission has lasted much longer than any γ-ray burst, whereas its peak luminosity was ∼100 times higher than bright active galactic nuclei. The association of the outburst with the center of its host galaxy suggests that this phenomenon has its origin in a rare mechanism involving the massive black hole in the nucleus of that galaxy.

5.
Nature ; 461(7268): 1258-60, 2009 Oct 29.
Article in English | MEDLINE | ID: mdl-19865166

ABSTRACT

Gamma-ray bursts (GRBs) are produced by rare types of massive stellar explosion. Their rapidly fading afterglows are often bright enough at optical wavelengths that they are detectable at cosmological distances. Hitherto, the highest known redshift for a GRB was z = 6.7 (ref. 1), for GRB 080913, and for a galaxy was z = 6.96 (ref. 2). Here we report observations of GRB 090423 and the near-infrared spectroscopic measurement of its redshift, z = 8.1(-0.3)(+0.1). This burst happened when the Universe was only about 4 per cent of its current age. Its properties are similar to those of GRBs observed at low/intermediate redshifts, suggesting that the mechanisms and progenitors that gave rise to this burst about 600,000,000 years after the Big Bang are not markedly different from those producing GRBs about 10,000,000,000 years later.

6.
Philos Trans A Math Phys Eng Sci ; 365(1854): 1269-75, 2007 May 15.
Article in English | MEDLINE | ID: mdl-17296596

ABSTRACT

There is strong evidence that long-duration gamma-ray bursts (GRBs) are produced during the collapse of a massive star. In the standard version of the collapsar model, a broad-lined and luminous Type Ic core-collapse supernova (SN) accompanies the GRB. This association has been confirmed in observations of several nearby GRBs. Recent observations show that some long-duration GRBs are different. No SN emission accompanied the long-duration GRBs 060505 and 060614 down to limits fainter than any known Type Ic SN and hundreds of times fainter than the archetypal SN 1998bw that accompanied GRB 980425. Multi-band observations of the early afterglows, as well as spectroscopy of the host galaxies, exclude the possibility of significant dust obscuration. Furthermore, the bursts originated in star-forming galaxies, and in the case of GRB 060505, the burst was localized to a compact star-forming knot in a spiral arm of its host galaxy. We find that the properties of the host galaxies, the long duration of the bursts and, in the case of GRB 060505, the location of the burst within its host, all imply a massive stellar origin. The absence of an SN to such deep limits therefore suggests a new phenomenological type of massive stellar death.

7.
Acta Crystallogr C ; 56 (Pt 8): 948-9, 2000 Aug.
Article in English | MEDLINE | ID: mdl-10944284

ABSTRACT

In the neutral title complex, trans-bis(2,2'-iminodiethanol-N, O)bis(isothiocyanato)nickel(II), [Ni(NCS)(2)(C(4)H(11)NO(2))(2)], the isothiocyanate ions and the diethanolamine molecules act as monodentate and bidentate ligands, respectively. The Ni(II) ion exhibits a distorted octahedral configuration with crystallographically imposed inversion symmetry and N(NCS)-Ni-N(amine) and N(NCS)-Ni-O(amine) bond angles of 88.78 (10) and 89.44 (10) degrees, respectively. The Ni-N bond distances are in the range 2.069 (3)-2.096 (2) A. The molecules are linked by hydrogen bonds to form a three-dimensional infinite lattice.

SELECTION OF CITATIONS
SEARCH DETAIL
...