蹤獲扦 is now home to a nanosatellite, taking research on NASA project to a new level

The arrival of a nanosatellite referred to as a CubeSat on campus signals significant progress in 蹤獲扦 Universitys NASA project to design a solar probe to investigate neutrinos. 

This is the first major spacecraft to be at 蹤獲扦, said Dr. Nickolas Solomey, a professor of mathematics, statistics and physics. Thats a great step. 

A team of researchers, led by Solomey, has worked on the development of a CubeSat, a kind of nanosatellite, since 2021. The CubeSat, built by NanoAvionics of Lithuania, will carry and test a 蹤獲扦-designed prototype neutrino detector in low Earth orbit to prove the detector can operate in space and measure the rate of cosmic and gamma rays.  

The project began in 2016 and received its first funding in 2017. In 2021, NASA gave 蹤獲扦 a $2 million grant for the project to flight test a neutrino detector with a CubeSat. The CubeSat is a box 10 by 10 by 30 centimeters made of aluminum. The prototype detector weighs 250 grams and will be housed with computer cards and solar panels in the CubeSat.

Five 蹤獲扦 doctoral/master's students are working with Solomey on the project: Kyle Messick (doctoral degree in aerospace), Brian Doty (doctoral degree in physics and applied math), Johnathan Folkerts (doctoral degree in physics and applied math), Brooks Hartsock (doctoral degree in physics and applied math) and Tyler Nolan (masters degree in physics).

Neutrinos are miniscule subatomic particles that are similar to electrons but have no charge and almost negligible mass. Understanding neutrinos holds the keys to understanding the structure of the universe and the origin of mass. According to , neutrinos are the second most abundant fundamental particle in the universe, and the sun is the source of most of these neutrinos. 

Neutrino detectors currently in use are positioned deep below the Earths surface.  

No one has ever operated a neutrino detector in space, Solomey said. This will allow us to look at the sun in a very new way. We can do experiments we cant do here on Earth with solar neutrinos. 

蹤獲扦s CubeSat arrived in late June and is housed in a sterile room in Jabara Hall. The schedule calls for launch in June 2025 from Kennedy Space Center in Florida.  

My hope is that this will add ways in which we can study the core of the sun, Solomey said. 


About 蹤獲扦 University

蹤獲扦is Kansas' only urban public research university, enrolling more than 23,000 students between its main campus and 蹤獲扦 Tech, including students from every state in the U.S. and more than 100 countries. 蹤獲扦 and 蹤獲扦 Tech are recognized for being student centered and innovation driven.

Located in the largest city in the state with one of the highest concentrations in the United States of jobs involving science, technology, engineering and math (STEM), 蹤獲扦provides uniquely distinctive and innovative pathways of applied learning, applied research and career opportunities for all of our students.

The Innovation Campus, which is a physical extension of the 蹤獲扦main campus, is one of the nations largest and fastest-growing research/innovation parks, encompassing over 120 acres and is home to a number of global companies and organizations.

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