Wednesday, July 29, 2020

Turkey: A new player in Killer Drone Arena

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Nikhita Gautam

Article Title

Turkey: A new player in Killer Drone Arena

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Global Views 360

Publication Date

July 29, 2020

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Bayraktar TB2—Turkey’s first indigenous produced armed drone

Bayraktar TB2—Turkey’s first indigenous produced armed drone | Source: Bayhaluk via Wikimedia

It is almost two decades since the military drone (Unmanned Aerial Vehicle --UAV) was used by any country (The USA) for aerial attack in a combat mission. It has led to a rush among the countries to acquire military drones through indigenous development programs or import from other countries.

Turkey tried to import the military drones from the USA and Israel but the product which it got was not up to the mark. After experiencing the difficulties in importing effective military drones, Turkey, through its robust private sector defence industry, started serious work to develop indigenous capability around 2010.  This focus paid off and in less than a decade Turkey became a major player in the production and export of military drones.

Bayraktar TB2 is Turkey’s first indigenously produced armed drone. It is developed by a private company “Baykar Makina.” This drone can fly at an altitude of 24,000 feet for up to 24 hours and relies on ground control stations for communication. With a range of up to 150 kilometres, it can carry a payload of 120 pounds and has become the backbone of its unmanned air force

The other heavier and satellite-linked military drone is ANKA-S which made its operational debut in 2019 during the battle over Idlib in Syria. It is manufactured by Turkish Aerospace Industries which is the giant of defence production in Turkey. It can fly for more than 24 hours carrying a 400-pound payload, and has the ability to detect, identify and track ground targets.

As of March 2020, Turkey has around 130 armed drones belonging to different versions of Bayraktar TB2, ANKA, and Karayel in service. These drones were critical in Turkey’s strikes against the Kurdish rebels and regime forces in Syria. Turkish drones were also credited to swing the momentum in the favour of UN recognised Libyan government against the onslaught by the renegade strongman; General Haftar led Libyan National Army in Libya

A report published by C4ISRNET, a publication that covers technology for defence and intelligence communities, said “Turkey’s decision to send a mass-coordinated UAV attack points to its availability of options It also stated that "Turkey joins the United States, United Kingdom, France, Israel, China and Iran as drone-armed nations."

As a logical extension to expanding drone programs Turkey has started looking for the opportunities in the competitive global market for military drones. It has so far exported the drones to Qatar, Ukraine, and Azerbaijan and is reportedly in talks with Pakistan, Indonesia, and Tunisia for the same.

The rapid advancement in the design, development, deployment, and export of killer drones has put spotlight on Turkey as a new player in a fiercely contested arena which is so far dominated by established heavyweight players.

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February 4, 2021 4:49 PM

Discovery of a new particle: A Charming Tetraquark

While the world is horrified by the novel Coronavirus, scientists at the European Centre for Nuclear Research (CERN) announced the discovery of a never seen before tetraquark. Any finding in particle physics is a phenomenal one because it could tell us a lot about the origins of the universe and how everything came to be. And this discovery is quite charming and quarky (quirky).

Quarks are the elementary particles so any further division of these particles is not possible. This means everything in the universe is ultimately a combination of Quarks. Any new discovery of Quarks  therefore increase our understanding about the origin of universe

When three Quarks come together, they form familiar particles known as Baryons, for instance, protons and neutrons, found in the nucleus of an atom. A tetraquark, in particle physics, is an exotic meson composed of four quarks.

Murray Gell-Mann, recipient of the 1969 Nobel Prize in Physics for his work on the theory of Elementary particles, chose the name ‘Quark’. Another scientist,  George Zweig from CERN also proposed the Quark theory independently of Gell-Mann.

All the new particles are detected using particle accelerators where particles are accelerated at almost the speed of light and collide to look into their subsets. It is like knocking two rocks together so that they break into smaller constituents.

The most recent tetraquark, named X (6900) was discovered by CERN physicists while working on LHCb (Large Hadron Collider beauty experiment). The already known tetraquarks contain a particular combination of two relatively heavy quarks and two light Quarks. On the other hand X(6900) consists of four heavy Quarks: two Quarks and two anti-Quarks.

This exclusive particle made of unusual combinations is a perfect setting for understanding the fundamental force of nature known as Strong Interaction. The strong force is vital to comprehend as it binds together protons, neutrons and the nucleus that ultimately make up matter. Another perk of X(6900)  is its relatively heavy mass, so these are simpler to look at and are more stable as compared to notoriously fast moving-lighter ones.

The paper written by 800 scientists is yet to be peer-reviewed. The bump observed has a statistical significance of more than five sigma (standard deviations) that is good enough to claim the discovery of a new particle.

In any scenario, this unusual discovery will serve as a piece for completing the puzzle of our universe while serving as evidence of the presence of new particles not yet found.

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