In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million kelvin and, in so-called tokamaks, they are confined by magnetic fields in the shape of a torus. Light nuclei, such as deuterium and tritium, undergo a fusion reaction that releases energy, making fusion a promising option for a sustainable and clean energy source. Tokamak plasmas, however, are prone to disruptions as a result of a sudden collapse of the system terminating the fusion reactions. As disruptions lead to an abrupt loss of confinement, they can cause irreversible damage to present-day fusion devices and are expected to have a more devastating effect in future devices. Disruptions expected in the next-generation tokamak, ITER, for ex...
| openaire: EC/H2020/633053/EU//EUROfusion Funding Information: This work was partially funded by th...
Nuclear fusion is one of the best options to achieve a virtually limitless energy source in the futu...
The sudden loss of the plasma magnetic confinement, known as disruption, is one of the major issue i...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
© 2022, Springer Nature Limited.In nuclear fusion reactors, plasmas are heated to very high temperat...
© 2022, Springer Nature Limited.In nuclear fusion reactors, plasmas are heated to very high temperat...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
| openaire: EC/H2020/633053/EU//EUROfusion Funding Information: This work was partially funded by th...
| openaire: EC/H2020/633053/EU//EUROfusion Funding Information: This work was partially funded by th...
Nuclear fusion is one of the best options to achieve a virtually limitless energy source in the futu...
The sudden loss of the plasma magnetic confinement, known as disruption, is one of the major issue i...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
© 2022, Springer Nature Limited.In nuclear fusion reactors, plasmas are heated to very high temperat...
© 2022, Springer Nature Limited.In nuclear fusion reactors, plasmas are heated to very high temperat...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
In nuclear fusion reactors, plasmas are heated to very high temperatures of more than 100 million ke...
| openaire: EC/H2020/633053/EU//EUROfusion Funding Information: This work was partially funded by th...
| openaire: EC/H2020/633053/EU//EUROfusion Funding Information: This work was partially funded by th...
Nuclear fusion is one of the best options to achieve a virtually limitless energy source in the futu...
The sudden loss of the plasma magnetic confinement, known as disruption, is one of the major issue i...