5,877 research outputs found
Distortion of meteor count rates due to cosmic radio noise and atmospheric particularities
The determination of the meteoroid flux is still a scientifically challenging
task. This paper focusses on the impact of extraterrestrial noise sources as
well as atmospheric phenomena on the observation of specular meteor echoes.
The effect of cosmic radio noise on the meteor detection process is estimated
by computing the relative difference between radio loud and radio quiet areas
and comparing the monthly averaged meteor flux for fixed signal-to-noise
ratios or fixed electron line density measurements. Related to the cosmic
radio noise is the influence of D-layer absorption or interference with
sporadic E-layers, which can lead to apparent day-to-day variation of the
meteor flux of 15–20%
IIaO ultraviolet and nuclear emulsion films responses to orbital flights on STS-3, STS-7, STS-8, and STS-40
Two types of film were flown on STS-40 space shuttle mission in June 1991. The IIaO special purpose ultraviolet film showed continued desensitization because of various thermal and cosmic ray interactions. The films were exposed to the space orbital environment for 9 days. There were several built-in launch pad delays of the shuttle mission. However, there was adequate monitoring of the temperature variations on board the shuttle that allowed for adequate knowledge of the thermal film history. This IIaO film was flown on the ASTRO I mission and is currently slated for use with the ASTRO II mission. A 50 micron thick IIIford Nuclear emulsion film was also placed on a 175 micron polyester base. The exposure to space produced several cosmic ray interactions that were analyzed and measured using Digital Image Processing techniques. This same nuclear emulsion film was flown on STS-8 and produced a similar number of cosmic ray and thermal interactions. From previous experiments of film using various laboratory electromagnetic radiation sources (e.g., alpha, beta, and neutron particles), we have been able to infer the possible oribtal interactions of both IIaO and nuclear emulsion films. The characteristic responses of IIaO on STS-40 compared favorably to the results obtained from previous STS-7 and STS-8 gas can experiments. The results indicate sufficient evidence correlating increased density on the film with possible cosmic ray, thermal and shuttle out gassing interactions
Prácticas de Empresas en Consejería de Medio Ambiente y Ordenación del Territorio, Junta de Andalucía
Improved Collective Thomson Scattering measurements of fast ions at ASDEX Upgrade
Understanding the behaviour of the confined fast ions is important in both
current and future fusion experiments. These ions play a key role in heating
the plasma and will be crucial for achieving conditions for burning plasma in
next-step fusion devices. Microwave-based Collective Thomson Scattering (CTS)
is well suited for reactor conditions and offers such an opportunity by
providing measurements of the confined fast-ion distribution function resolved
in space, time and 1D velocity space. We currently operate a CTS system at
ASDEX Upgrade using a gyrotron which generates probing radiation at 105 GHz. A
new setup using two independent receiver systems has enabled improved
subtraction of the background signal, and hence the first accurate
characterization of fast-ion properties. Here we review this new dual-receiver
CTS setup and present results on fast-ion measurements based on the improved
background characterization. These results have been obtained both with and
without NBI heating, and with the measurement volume located close to the
centre of the plasma. The measurements agree quantitatively with predictions of
numerical simulations. Hence, CTS studies of fast-ion dynamics at ASDEX Upgrade
are now feasible. The new background subtraction technique could be important
for the design of CTS systems in other fusion experiments.Comment: 4 pages, 4 figures, to appear in Proc. of "Fusion Reactor
Diagnostics", eds. F. P. Orsitto et al., AIP Conf. Pro
An extensive spectroscopic time-series of three Wolf-Rayet stars. I. The lifetime of large-scale structures in the wind of WR 134
During the summer of 2013, a 4-month spectroscopic campaign took place to
observe the variabilities in three Wolf-Rayet stars. The spectroscopic data
have been analyzed for WR 134 (WN6b), to better understand its behaviour and
long-term periodicity, which we interpret as arising from corotating
interaction regions (CIRs) in the wind. By analyzing the variability of the He
II 5411 emission line, the previously identified period was refined to
P = 2.255 0.008 (s.d.) days. The coherency time of the variability, which
we associate with the lifetime of the CIRs in the wind, was deduced to be 40
6 days, or 18 cycles, by cross-correlating the variability
patterns as a function of time. When comparing the phased observational
grayscale difference images with theoretical grayscales previously calculated
from models including CIRs in an optically thin stellar wind, we find that two
CIRs were likely present. A separation in longitude of
90 was determined between the two CIRs and we suggest that the
different maximum velocities that they reach indicate that they emerge from
different latitudes. We have also been able to detect observational signatures
of the CIRs in other spectral lines (C IV 5802,5812 and He I
5876). Furthermore, a DAC was found to be present simultaneously with
the CIR signatures detected in the He I 5876 emission line which is
consistent with the proposed geometry of the large-scale structures in the
wind. Small-scale structures also show a presence in the wind, simultaneously
with the larger scale structures, showing that they do in fact co-exist.Comment: 13 pages, 13 figures, 4 tables, will appear in the Monthly Notices
for the Royal Astronomical Society,
http://www.astro.umontreal.ca/~emily/CIR_Lifetime_WR134_full.pd
Understanding the core density profile in TCV H-mode plasmas
Results from a database analysis of H-mode electron density profiles on the
Tokamak \`a Configuration Variable (TCV) in stationary conditions show that the
logarithmic electron density gradient increases with collisionality. By
contrast, usual observations of H-modes showed that the electron density
profiles tend to flatten with increasing collisionality. In this work it is
reinforced that the role of collisionality alone, depending on the parameter
regime, can be rather weak and in these, dominantly electron heated TCV cases,
the electron density gradient is tailored by the underlying turbulence regime,
which is mostly determined by the ratio of the electron to ion temperature and
that of their gradients. Additionally, mostly in ohmic plasmas, the Ware-pinch
can significantly contribute to the density peaking. Qualitative agreement
between the predicted density peaking by quasi-linear gyrokinetic simulations
and the experimental results is found. Quantitative comparison would
necessitate ion temperature measurements, which are lacking in the considered
experimental dataset. However, the simulation results show that it is the
combination of several effects that influences the density peaking in TCV
H-mode plasmas.Comment: 23 pages, 12 figure
Conceptualizing the adventure-sports coach
As a comparatively recent development, the adventure-sports coach struggles for a clear and distinct identity. The generic term ‘instructor’ no longer characterizes the role and function of this subgroup of outdoor professionals. Indeed, although the fields of adventure/outdoor education and leadership are comparatively well researched, the arrival of this ‘new kid on the block’ appears to challenge both the adventure-sports old guard and traditional views of sports coaching. In an attempt to offer clarity and stimulate debate, this paper attempts to conceptualize the adventure-sports coach in the context of the existing roles in the field and current motivations for activity in the outdoors. We identify issues that are specific to the adventure-sports coach while also recognizing those skills and competencies shared with other professionals, both in the adventure sports profession and traditional sports coaching fields. Based on this review, we offer a conceptual model which may be used to focus debate, stimulate research and, at a possible later stage, to underpin accreditation, training and professional development
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