A topological flux function is introduced to quantify the topology of magnetic braids: non-zero line-tied magnetic fields whose field lines all connect between two boundaries. This scalar function is an ideal invariant defined on a cross-section of the magnetic field, whose integral over the cross-section yields the relative magnetic helicity. Recognising that the topological flux function is an action in the Hamiltonian formulation of the field line equations, a simple formula for its differential is obtained. We use this to prove that the topological flux function uniquely characterises the field line mapping and hence the magnetic topology. A simple example is presented.</p
Stability and reconnection of magnetic fields play a fundamental role in natural and manmade plasma....
Magnetic winding is a fundamental topological quantity that underpins magnetic helicity and measures...
Predicting the final state of turbulent plasma relaxation is an important challenge, both in astro-p...
A topological flux function is introduced to quantify the topology of magnetic braids: non-zero line...
A topological flux function is introduced to quantify the topology of magnetic braids: non-zero line...
We introduce a topological flux function to quantify the topology of magnetic braids: non-zero, line...
We introduce a topological flux function to quantify the topology of magnetic braids: non-zero, line...
Braided vector fields on spatial subdomains which are homeomorphic to the cylinder play a crucial ro...
This thesis concerns applications of topology in magnetic fields. First, we examine the influence o...
Bei vielen physikalischen Fragestellungen ist es von Interesse, die topologische Komplexität magneti...
Field line helicity measures the net linking of magnetic flux with a single magnetic field line. It ...
We examine the dynamics of magnetic flux tubes containing non trivial field line braiding (or linkag...
The topological underpinning of magnetic fields connected to a planar boundary is naturally describe...
Predicting the final state of turbulent plasma relaxation is an important challenge, both in astro-p...
We reconsider the topological interpretation of magnetic helicity for magnetic fields in open domain...
Stability and reconnection of magnetic fields play a fundamental role in natural and manmade plasma....
Magnetic winding is a fundamental topological quantity that underpins magnetic helicity and measures...
Predicting the final state of turbulent plasma relaxation is an important challenge, both in astro-p...
A topological flux function is introduced to quantify the topology of magnetic braids: non-zero line...
A topological flux function is introduced to quantify the topology of magnetic braids: non-zero line...
We introduce a topological flux function to quantify the topology of magnetic braids: non-zero, line...
We introduce a topological flux function to quantify the topology of magnetic braids: non-zero, line...
Braided vector fields on spatial subdomains which are homeomorphic to the cylinder play a crucial ro...
This thesis concerns applications of topology in magnetic fields. First, we examine the influence o...
Bei vielen physikalischen Fragestellungen ist es von Interesse, die topologische Komplexität magneti...
Field line helicity measures the net linking of magnetic flux with a single magnetic field line. It ...
We examine the dynamics of magnetic flux tubes containing non trivial field line braiding (or linkag...
The topological underpinning of magnetic fields connected to a planar boundary is naturally describe...
Predicting the final state of turbulent plasma relaxation is an important challenge, both in astro-p...
We reconsider the topological interpretation of magnetic helicity for magnetic fields in open domain...
Stability and reconnection of magnetic fields play a fundamental role in natural and manmade plasma....
Magnetic winding is a fundamental topological quantity that underpins magnetic helicity and measures...
Predicting the final state of turbulent plasma relaxation is an important challenge, both in astro-p...