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18 April 2022 | Story Leonie Bolleurs | Photo Stephen Collett
Prof Ted Kroon
Prof Ted Kroon from the Department of Physics recently delivered his inaugural lecture on the topic What’s the use of a rainbow on the UFS Bloemfontein Campus.

“A rainbow is a natural phenomenon, the result of the refraction and reflection of the sun’s rays in drops of rain. As far as mankind is concerned, it’s a perfectly useless object and won’t make anyone money. Yet the poet who said, My heart leaps up when I behold a rainbow in the sky, only put into word the feeling of wonder and excitement we all have when we see a rainbow.”

“Every day I see a rainbow in my work; I do not need to wait to see one in the sky,” says Prof Ted Kroon, Professor in the Department of Physics at the University of the Free State (UFS), who used this phenomenon to introduce the topic of his inaugural lecture: What’s the use of a rainbow. 

“Far from being only a colourful spectacle with no practical value, rainbows are useful – and lead to useful things,” he believes. 

According to Prof Kroon, one can find examples of real rainbows and rainbow analogies used not only in everyday life, but also in physics. “Besides it being familiar devices in literature, culture, and even marketing, studies of rainbows can yield practical engineering information and may even help us to find new habitable planets,” he says.

Inspired by the many uses of a rainbow

In his lecture, he discussed the basic features of natural rainbows and how they come about. He also explored how the rainbow gives meaning to colour, and how this relates to the temperature of objects. He looked at an array of instances where the rainbow is used; from depicting the life of a star to indicating that we are sick (a thermometer) or when we need to refill a gas cylinder.
Moreover, Prof Kroon pointed out that rainbows are used in computer chips, stress identification, and to transmit internet data through underwater cables of glass fibre. He also referred to how the rainbow was harnessed as an engineering tool to measure refractive index and characterise fine droplet sprays used in industry. 

He continues, “Remarkably, the science developed to understand the natural rainbow can be redirected and applied to the optical properties of metallic nanoparticles, allowing the development of nanotechnology. Knowing how the natural rainbow works and its limitations, better systems have been developed to produce rainbows. Such rainbows have been used to discover new elements and to determine the age of the universe.”

As a member of an international community of phosphor researchers who are privileged to work with rainbows every day, he has used them to study the light-emitting properties of materials doped with bismuth. With this project – an initiative with the African Laser Centre taking place between 2016 and 2021 – he collaborated with the University of Khartoum in Sudan and trained a number of its postgraduate students. “My role included the guidance of students and the measurement and interpretation of the light-emitting properties of the materials. Our research during this time, considering more than a dozen materials, was summarised in 34 scientific publications that contributed to a greater understanding of bismuth ions as light-emitting materials,” he explains. 

Developing new materials, efficient in emitting blue light

He has been developing luminescent materials since 2006, primarily for general lighting (fluorescent tubes and LEDs) and displays (television, computer, and cellphone screens), as well as niche applications in medical and forensic science. 

As part of his current research, he is examining the effect of plasmonic metal nanoparticles on phosphor light emission. He is also exploring materials that absorb infrared light but emit visible light. “For this, I would like to consider the long-term stability of such materials and develop new materials that are more efficient in emitting particularly blue light,” he says. 

Prof Kroon holds a C2 rating from the National Research Foundation and has published more than 150 articles and book chapters, obtaining a Scopus h-index of 26.

News Archive

UFS researcher explores the future cost of cancer
2017-01-10

 Description: 001 Dr Alicia Sherriff Tags: 001 Dr Alicia Sherriff

Dr Alicia Sherriff, Head the Department of Oncology
at the UFS Faculty of Health Sciences, co-authored
an article in the South African Medical Journal.

Photo: Charl Devenish

Cancer is on an exponential rise globally, and the cost of treatment is a growing international problem. South Africa alone is expected to see a 78% increase in cancer cases. Dr Alicia Sheriff, Head of the Department of Oncology, collaborated on and co-authored a research paper for the South African Medical Journal on the future of oncology treatment in the country, along with doctors from various universities across South Africa. The article, titled "The future cost of cancer: interdisciplinary cost management strategy", looks at the prognosis of cancer management in the country.

Cancer is on the rise

There is a visible growth of the cancer disease in the developing world. Rapidly changing lifestyles, uncontrolled urbanisation, pollution, and population ageing are some dynamics that provide a lethal cocktail of infectious and lifestyle risk factors that leave people at a higher risk of developing cancer.

The simultaneous increase in cancer incidence has increased the cost of treatment exponentially. The cost of cancer treatment is multitiered, making the provision of care for cancer patients a high-risk business. A combination of treatment delays, limited resources, differently skilled personnel, high patient volumes and advanced disease stage on presentation all place a bigger burden on the delivery of optimal cancer care outcomes.

Adoption of new strategies

According to the doctors, innovative thinking to embrace technology, combined with a preventive approach, as well as lowering the cost of treatment drugs should be prioritised. So should the commercialisation of new technologies that will diagnose and treat cancer in its early stages. They also encourage interdisciplinary research funding in South Africa as a way to better understand the demographic and molecular dynamics of cancer in the country, along with retaining more oncologists in the public health sector.

Efficient solutions to curb cancer mortality

The doctors assert there is a need to continue to look for more efficient measures to best treat the disease, and hopefully bring about a change in mortality levels in South Africa.

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