SearcharxivSearch

arXiv · astro-ph/9705040

Are Pressure-Confined Clouds in Galactic Halo Possible for a Model of Ly$α$ Cloud?

Abstract

(ABRIDGED)The Ly$α$ clouds at low redshifts (z < 1.7)observed by HST showed us two unexpected features: Lanzetta et.al.establised the association between Ly$α$ clouds and galaxies, and Ulmer pointed out the strong clustering of Ly$α$ clouds. Motivated by these observations together with another observation which reports the detection of metal in the Ly$α$ clouds at high redshift universe, we propose the two-component protogalaxy modelas a model for the Ly$α$ cloud based upon the previous work. In our model,the Ly$α$ clouds are supposed to be stable cold clouds confined by the pressure of ambient hot gas in galactic halo. We determine the properties of these cold clouds and hot gas on the basis of theoretical and observational constraints. Especially, we take into account the stability of a cold cloud in the galactic halo in addition to the general stability conditions in a two-component medium, and compare the derived quantities of Ly$α$ clouds both cases in galactic halo and in intergalactic medium between high and low redshifts. We conclude that the condition that a cloud is stable against both evaporation and tidal destruction by a hot galactic halo is very restrictive. As a result, in the most noteworthy case, at z${\sim}$0.5,it is concluded that a pressure-confined, stable spherical Ly$α$ cloud with typical neutral hydrogen column density $N_{HI}=10^{14}cm^{-2}$ cannot survive in the galactic halo, although much higher column density clouds of $N_{HI}= 10^{17}cm^{-2}$ can do there.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Keiko Miyahata, Satoru Ikeuchi. 1997-10-09. Are Pressure-Confined Clouds in Galactic Halo Possible for a Model of Ly$α$ Cloud?. https://arxiv.org/abs/astro-ph/9705040

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

MOND: A consequence of the geometric Leibniz Clock

Leibniz considered the notion of the 'empty physical space' to be a meaningless abstraction, and he held firmly to the view that the only significant thing was the set of relationships between 'objects', whatever these 'objects' might be. Similarly, he was equally clear in expressing his views about Newton's universal time, which he also considered to be a meaningless abstraction. In effect, for him, time was no more than a synonym for ordered change within a material system. The process of giving quantitative realization to this duality of non-Newtonian ideas forms the core of this work. A primary result arising is that every gravitating particle is no more than a clock - the geometric Leibniz Clock - which provides all the basic things: it conserves energy and angular momentum and satisfies the Weak Equivalence Principle. When the Clock is applied to model the concept of a galactic object within which all motions are circular, the characteristic properties of the MOND galaxy (asymptotic flatness, a critical acceleration scale, the baryonic Tully-Fisher relationship) are quantitatively reproduced in the resulting Leibniz galaxy. In short, the characteristic essence of MOND has its source in the geometric Leibniz Clock.

astro-ph

Cosmic Variance and Its Effect on the Luminosity Function Determination in Deep High z Surveys

We study cosmic variance in deep high redshift surveys and its influence on the determination of the luminosity function for high redshift galaxies. For several survey geometries relevant for HST and JWST instruments, we characterize the distribution of the galaxy number counts. This is obtained by means of analytic estimates via the two point correlation function in extended Press-Schechter theory as well as by using synthetic catalogs extracted from N-body cosmological simulations of structure formation. We adopt a simple luminosity - dark halo mass relation to investigate the environment effects on the fitting of the luminosity function. We show that in addition to variations of the normalization of the luminosity function, a steepening of its slope is also expected in underdense fields, similarly to what is observed within voids in the local universe. Therefore, to avoid introducing artificial biases, caution must be taken when attempting to correct for field underdensity, such as in the case of HST UDF i-dropout sample, which exhibits a deficit of bright counts with respect to the average counts in GOODS. A public version of the cosmic variance calculator based on the two point correlation function integration is made available on the web.

astro-ph

Receiver control for the Submillimeter Array

Efficient operation of a submillimeter interferometer requires remote (preferably automated) control of mechanically tuned local oscillators, phase-lock loops, mixers, optics, calibration vanes and cryostats. The present control system for these aspects of the Submillimeter Array (SMA) will be described. Distributed processing forms the underlying architecture and the software is split between hardware platforms in a leader/follower arrangement. In each antenna cabin, a serial network of up to ten independent 80C196 microcontroller boards attaches to the real-time PowerPC computer (running LynxOS). A multi-threaded, gcc-compiled leader program on the PowerPC accepts top-level requests via remote procedure calls (RPC), subsequently dispatches tuning commands to the relevant follower microcontrollers, and regularly reports the system status to optical-fiber-based reflective memory for common access by the telescope monitor and error reporting system. All serial communication occurs asynchronously via encoded, variable-length packets. The microcontrollers respond to the requested commands and queries by accessing non-volatile, rewriteable lookup-tables (when appropriate) and executing embedded software that operates additional electronic devices (DACs, ADCs, etc.). Since various receiver hardware components require linear or rotary motion, each microcontroller also implements a position servo via a one-millisecond interrupt service routine which drives a DC-motor/encoder combination that remains standard across each subsystem.

astro-ph