This work was supported by EPSRC Grant No. EP/L015110/1.Environmental noise plays a key role in determining the efficiency of transport in quantum systems. However, disorder and localisation alter the impact of such noise on energy transport. To provide a deeper understanding of this relationship we perform a systematic study of the connection between eigenstate localisation and the optimal dephasing rate in 1D chains. The effects of energy gradients and disorder on chains of various lengths are evaluated and we demonstrate how optimal transport efficiency is determined by both size-independent, as well as size-dependent factors. By discussing how size-dependent influences emerge from finite size effects we establish when these effects are ...
We consider quantum excitation energy transport (EET) in a network of two-state nodes in the Markovi...
We consider the dynamics of strongly localized systems subject to dephasing noise with arbitrary cor...
The study of noise assisted transport in quantum systems is essential in a wide range of application...
Environmental noise plays a key role in determining the efficiency of transport in quantum systems. ...
Excitonic transport in static-disordered one dimensional systems is studied in the presence of therm...
doi:10.1088/1367-2630/10/11/113019 Abstract. Transport phenomena are fundamental in physics. They al...
Original article can be found at: http://www.iop.org/EJ/journal/1367-2630/1 DOI: 10.1088/1367-2630/1...
We consider the transport of electrons or excitons through a random environment in the presence of c...
We study the interplay between dephasing, disorder, and coupling to a sink on transport efficiency i...
Understanding energy transport in quantum systems is crucial for an understanding of light-harvestin...
A study of long-range interactions in disordered systems yields a surprising result: Transport can i...
We study, under very general conditions and in a variety of geometries, quantum enhancement of trans...
We study the transport properties of a one dimensional quantum system with disorder. We numerically ...
In this thesis, we have explored the commonalities and connections between different classes of quan...
We consider quantum excitation energy transport (EET) in a network of two-state nodes in the Markovi...
We consider quantum excitation energy transport (EET) in a network of two-state nodes in the Markovi...
We consider the dynamics of strongly localized systems subject to dephasing noise with arbitrary cor...
The study of noise assisted transport in quantum systems is essential in a wide range of application...
Environmental noise plays a key role in determining the efficiency of transport in quantum systems. ...
Excitonic transport in static-disordered one dimensional systems is studied in the presence of therm...
doi:10.1088/1367-2630/10/11/113019 Abstract. Transport phenomena are fundamental in physics. They al...
Original article can be found at: http://www.iop.org/EJ/journal/1367-2630/1 DOI: 10.1088/1367-2630/1...
We consider the transport of electrons or excitons through a random environment in the presence of c...
We study the interplay between dephasing, disorder, and coupling to a sink on transport efficiency i...
Understanding energy transport in quantum systems is crucial for an understanding of light-harvestin...
A study of long-range interactions in disordered systems yields a surprising result: Transport can i...
We study, under very general conditions and in a variety of geometries, quantum enhancement of trans...
We study the transport properties of a one dimensional quantum system with disorder. We numerically ...
In this thesis, we have explored the commonalities and connections between different classes of quan...
We consider quantum excitation energy transport (EET) in a network of two-state nodes in the Markovi...
We consider quantum excitation energy transport (EET) in a network of two-state nodes in the Markovi...
We consider the dynamics of strongly localized systems subject to dephasing noise with arbitrary cor...
The study of noise assisted transport in quantum systems is essential in a wide range of application...