Copyright © 2008 The American Physical SocietyWe propose a model for a novel artificial low Reynolds number swimmer, based on the magnetic interactions of a pair of ferromagnetic particles: one with hard and the other with soft magnetic properties, connected by a linear spring. Using a computational model, we analyze the behavior of the system and demonstrate that for realistic values of the parameters involved, the swimmer is capable of self-propelling with average speeds of the order of hundreds of micrometers per second
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
The development of artificial microswimmers, microscopic robots that swim in a fluid like sperm cell...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
This is the final version of the article. Available from Springer Nature via the DOI in this record....
PublishedJournal ArticleThis is the author accepted manuscript. The final version is available from ...
Copyright © 2011 Oxford University Press. This is a pre-copy-editing, author-produced PDF of an arti...
We formulate and solve the equations governing the dynamics of a microscopic artificial swimmer comp...
We formulate and solve the equations governing the dynamics of a microscopic artificial swimmer comp...
We formulate and solve the equations governing the dynamics of a microscopic artificial swimmer comp...
We present an experimental realisation of two new artificial microswimmers that swim at low Reynolds...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Microswimmers, i.e. swimmers of micron size experiencing low Reynolds numbers, have received a great...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
The development of artificial microswimmers, microscopic robots that swim in a fluid like sperm cell...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
This is the final version of the article. Available from Springer Nature via the DOI in this record....
PublishedJournal ArticleThis is the author accepted manuscript. The final version is available from ...
Copyright © 2011 Oxford University Press. This is a pre-copy-editing, author-produced PDF of an arti...
We formulate and solve the equations governing the dynamics of a microscopic artificial swimmer comp...
We formulate and solve the equations governing the dynamics of a microscopic artificial swimmer comp...
We formulate and solve the equations governing the dynamics of a microscopic artificial swimmer comp...
We present an experimental realisation of two new artificial microswimmers that swim at low Reynolds...
In recent years, much effort has been placed on development of microscale devices capable of propuls...
Microswimmers, i.e. swimmers of micron size experiencing low Reynolds numbers, have received a great...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
International audienceThe movement of microorganisms is not only an essential aspect of life, it als...
The development of artificial microswimmers, microscopic robots that swim in a fluid like sperm cell...