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28 October 2019 | Story Leonie Bolleurs | Photo Anja Aucamp
Dr Brain van Soelen and Prof Pieter Meintjies
UFS scientists, Prof Pieter Meintjes and Dr Brian van Soelen, are part of the prestigious H.E.S.S. collaboration that recently published in Nature Astronomy.

Think of an object with a mass exceeding that of the Sun, squeezed into a volume of a sphere with the radius of a city like Bloemfontein. This very dense, compact object, known as a pulsar, is also a great source of energy. According to Physics Professor, Prof Pieter Meintjes, this pulsar (neutron star produced in supernova explosion) is also a key element of a recently submitted paper in Nature Astronomy.

Prof Meintjes and Dr Brian van Soelen, Senior Lecturer, both from the Department of Physics at the University of the Free State (UFS), were part of the High Energy Stereoscopic System (H.E.S.S.) collaboration of 220-plus scientists worldwide who worked on the paper Resolving the Crab pulsar wind nebula at tera-electronvolt energies, published in the prestige journal Nature Astronomy. 

According to Prof Meintjes, the fact that the paper was accepted for publication in Nature Astronomy testifies of the importance of this finding in the high-energy astrophysics community.

Powerful generators of electricity

He elaborates on the study: “The name pulsar originates from the fact that rotating neutron stars produced in supernova explosions produce beams of radiation, much like a lighthouse. Every time the beam intersects the observer’s line of sight, the observer receives a pulse of radiation.”

“As a result of this enormous mass squeezed into a small volume, these objects have the same density as that of an atomic nucleus. These objects (very dense pulsars) spin very rapidly and have enormous magnetic fields; for example, the pulsar at the centre of the Crab Nebulae spins around its axis once every 33 milliseconds (millisecond: one thousandth of a second) and possesses a magnetic field strength of the order of one tera-Gauss (tera – million x million). For comparison, the average strength of the Earth’s magnetic field is 0.5. Gauss and the magnetic field strength on the Sun ranges between 1 000 and 4 000 Gauss.”

“Because of this very super-strong rapid-spinning magnet, enormous electric fields are induced that can accelerate particles such as electrons and protons to energies in excess of one tera-electronvolt (optical light that are emitted by an ordinary lightbulb has energies of the order of one electronvolt).”

Prof Meintjes continues: “This means that these fast-rotating neutron stars are extraordinary powerful generators of electricity, which fills the surrounding cloud (supernova remnant) with super-high energy-charged particles that can produce, in turn, very high energy gamma rays through various processes such as synchrotron radiation and inverse-Compton radiation, to name a few.”

H.E.S.S. collaboration 

Above one tera-electronvolt, the gamma rays are detected by huge ground-based telescopes such as H.E.S.S., utilising the Earth’s atmosphere.

“When these high-energy gamma rays enter the atmosphere, they produce showers of super-relativistic particles that produce Cherenkov light – detected by the telescope. The technique is called the Atmospheric Cherenkov Technique (ACT).”

HESS
The High Energy Stereoscopic System. (Photo: Supplied)

“The H.E.S.S. gamma-ray collaboration is but one collaboration that has studied this source intensively over the past couple of decades or so.  Being the most powerful gamma-ray telescope facility currently operational, very careful analysis of the data managed to reveal that the gamma-ray emitting region inside the nebula is about 10 times bigger in size than the region where the x-rays are emitted within the nebula.” 

“This has solved a long-standing question as to how big the gamma-ray emitting region within these supernova remnants are, compared to the region where the x-rays, for example, originates,” says Prof Meintjes. 

Both Prof Meintjes and Dr Van Soelen are members of this prestigious H.E.S.S. collaboration. Their participation in this project, together with scientists from universities such as the University of Oxford, the University of Leicester, and the University of Bordeaux, opens up valuable research opportunities for UFS postgraduate students to enter the international stage and interact with the best scientists in the world.

They are also members of the editorial board responsible for the internal review of research papers before being submitted to more prestigious journals, for example, Nature Astronomy. Dr Van Soelen is also a coordinator of multi-wavelength follow-up observations within the H.E.S.S. collaboration. 

This is the second time that Prof Meintjes published in Nature Astronomy. Previously, he was co-author of a paper on emission from a white dwarf pulsar, showing that fast-rotating white dwarf stars could in fact mimic emission from neutron star pulsars. He developed the theoretical model reported in that paper, explaining the multi-wavelength emission from radio to X-ray energies.


News Archive

UFS lecturer overcomes barriers to become world-class researcher
2016-09-05

Description: Dr Magteld Smith researcher and deaf awareness activist Tags: Dr Magteld Smith researcher and deaf awareness activist

Dr Magteld Smith researcher and deaf awareness
activist, from the Department of Otorhinolaryngology
at the UFS.
Photo: Nonsindiso Qwabe

Renowned author and disability activist Helen Keller once said the problems that come with being deaf are deeper and more far-reaching than any other physical disability, as it means the loss of the human body’s most vital organ, sound.

Dr Magteld Smith, researcher at the Department of Otorhinolaryngology (Ear, Nose and Throat) at the University of the Free State, said hearing loss of any degree can have psychological and sociological implications which may impair the day-to-day functioning of an individual, as well as preventing the person from reaching full potential. That is why Smith is making it her mission to bring about change in the stigmatisation surrounding deafness.

Beating the odds
Smith was born with bilateral (both ears) severe hearing loss, which escalated to profound deafness. But she has never allowed it to hinder her quality of life. She matriculated from a school for the deaf in 1985. In 2008 she received a cochlear implant   a device that replaces the functioning of the damaged inner ear by providing a sense of sound to the deaf person   which she believes transformed her life. Today, she is the first deaf South African to possess two masters degrees and a PhD.

She is able to communicate using spoken language in combination with her cochlear implant, lip-reading and facial expressions. She is also the first and only deaf person in the world to have beaten the odds to become an expert researcher in various fields of deafness and hearing loss, working in an Otorhinolaryngology department.

Advocating for a greater quality of life
An advocate for persons with deafness, Smith conducted research together with other experts around the world which illustrated that cochlear implantation and deaf education were cost-effective in Sub-Saharan Africa. The cost-effectiveness of paediatric cochlear implantation has been well-established in developed countries; but is unknown in low resource settings.

However, with severe-to-profound hearing loss five times higher in low and middle-income countries, the research emphasises the need for the development of cost-effective management strategies in these settings.

This research is one of a kind in that it states the quality of life and academic achievements people born with deafness have when they use spoken language and sign language as a mode of communication is far greater than those who only use sign language without any lip-reading.

Deafness is not the end

What drives Smith is the knowledge that deaf culture is broad and wide. People with disabilities have their own talents and skills. All they need is the support to steer them in the right direction. She believes that with the technological advancements that have been made in the world, deaf people also have what it takes to be self-sufficient world-changers and make a lasting contribution to humanity.

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