Category Archives: Science and Technology

ESO: Possible explanation for why Milky Way-like galaxies are so common

A report from the European Southern Observatory (ESO):

Violent Origins of Disc Galaxies Probed by ALMA

New observations explain why Milky Way-like galaxies are
so common in the Universe

For decades scientists have believed that galaxy mergers usually result in the formation of elliptical galaxies. Now, for the the first time, researchers using ALMA and a host of other radio telescopes have found direct evidence that merging galaxies can instead form disc galaxies, and that this outcome is in fact quite common. This surprising result could explain why there are so many spiral galaxies like the Milky Way in the Universe.

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An international research group led by Junko Ueda, a Japan Society for the Promotion of Science postdoctoral fellow, has made surprising observations that most galaxy collisions in the nearby Universe — within 40–600 million light-years from Earth — result in so-called disc galaxies. Disc galaxies — including spiral galaxies like the Milky Way and lenticular galaxies — are defined by pancake-shaped regions of dust and gas, and are distinct from the category of elliptical galaxies.

It has, for some time, been widely accepted that merging disc galaxies would eventually form an elliptically shaped galaxy. During these violent interactions the galaxies do not only gain mass as they merge or cannibalise each-other, but they are also changing their shape throughout cosmic time, and therefore changing type along the way.

Computer simulations from the 1970s predicted that mergers between two comparable disc galaxies would result in an elliptical galaxy. The simulations predict that most galaxies today are elliptical, clashing with observations that over 70% of galaxies are in fact disc galaxies. However, more recent simulations have suggested that collisions could also form disc galaxies.

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Merger between two galaxies (artist’s impression)

To identify the final shapes of galaxies after mergers observationally, the group studied the distribution of gas in 37 galaxies that are in their final stages of merging. The Atacama Large Millimeter/sub-millimeter Array (ALMA) and several other radio telescopes [1] were used to observe emission from carbon monoxide (CO), an indicator of molecular gas.

The team’s research is the largest study of molecular gas in galaxies to date and provides unique insight into how the Milky Way might have formed. Their study revealed that almost all of the mergers show pancake-shaped areas of molecular gas, and hence are disc galaxies in the making. Ueda explains:

“For the first time there is observational evidence for merging galaxies that could result in disc galaxies. This is a large and unexpected step towards understanding the mystery of the birth of disc galaxies.”

Nonetheless, there is a lot more to discover. Ueda added:

“We have to start focusing on the formation of stars in these gas discs. Furthermore, we need to look farther out in the more distant Universe. We know that the majority of galaxies in the more distant Universe also have discs. We however do not yet know whether galaxy mergers are also responsible for these, or whether they are formed by cold gas gradually falling into the galaxy. Maybe we have found a general mechanism that applies throughout the history of the Universe.”

Sci-Tech: LPP Fusion update

The latest update from Lawrenceville Plasma Physics (LPPFusion) , which is developing an aneutronic focus fusion power system, is now available on line:  LPP Fusion Report September 8th 2014 –

LPP Focus Fusion Report

September 8, 2014

Summary:

* Fusion Policy: Nature calls for funding aneutronic fusion; ARPA-E puts $30 million for fusion alternatives; Science covers fusion start-ups

* Dr. Hamid R. Yousefi is new LPP Chief Research Officer

* Assembly of FF-1 with tungsten electrodes begins

And from the latter item:

The first steps have now been completed to begin the re-assembly of FF-1. LPP’s lab team has successfully joined the new monolithic tungsten anode to a steel connector plate, creating a current contact that is outside the vacuum chamber and arcing-proof.  Moving the contact outside the vacuum chamber completely eliminates the possibility that vaporization caused by arcing will add impurities to the plasma. In addition, making the contact at a lager radius spreads out the current, making it easier to avoid the intense heating that leads to vaporization.

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 We will now mount the steel plate and anode onto the FF-1 device. We currently expect assembly to be complete in October.

Sci-Tech: CogniMem sells neural network pattern recognition devices

CogniMem Technologies Inc. is a Northern California based company that specializes in hardware devices for fast pattern recognition applications.  Their  technologies include the CogniMem™ CM1K neural network chip and modules with the chip. They also offer software for training, testing and implementation of the neural networks.

The CogniStix is one of their latest products:

CogniStix™ is a compact, low cost USB-powered Hardware Neural Network device. It contains the ideal module for simplifying the evaluation of the capabilities and performance of the CM1K for performing machine learning and pattern matching using the component classifiers RBF and KNN.

The CogniStix Evaluation Platform includes everything needed to get started. It has been designed for simplicity of deployment, speed and low-power consumption.

CogniStix can also be used by system integrators for rapid prototyping. This hardware accelerator can enhance new and/or existing product performance, and/or simplify application development, reducing time-to-market.

An announcement in my email says they are offering a special price on the CogniStix:

Don’t Miss out on the $99 Promotion.
Prices go up to on September 15th 2014

Add Artificial Intelligence to any application easily by using CogniStix.
The CogniStix Evaluation Platform comes with the CogniSoft SDK and three Demonstration Assets.

This video demonstrates the use of the

 

Find more video demos at CogniMem Technologies – YouTube.

Sci-Tech: Levitation for fun and profits

Here’s a survey of various cool techniques for levitating objects and the efforts to commercialize them : Can levitating appliances take off? – CNN.com

* One project is the Malloy hoverbike that I mentioned here the other day:

* Magnetic magic from CREALEV:

* A levitating speaker from Om Audio :

* Levitating arrays of small items with acoustic waves:

 

Sci-Tech: Malloy Aeronautics hoverbike project lifts off with 1/3 scale drone

The company Malloy Aeronautics has designed a one-person ducted-fan vehicle, i.e a hoverbike, and hopes to pay for its development with sales of a 1/3 scale-model drone version. They have more than doubled their £30,000 goal in a Kickstarter campaign to cover marketing the drone : Hoverbike by Chris Malloy — Kickstarter

The objective of this campaign is to kick-start sales of our beautiful 1/3rd scale Hoverbike drone and accessories via your pledges, and to help create a long term income stream that we can use to continue development of the manned Hoverbike. 

Here is their Kickstarter video:

More about the project: Watch A Robot Ride A Hovercycle – Popular Science –