We derive an effective Hamiltonian for a (001)-confined quasi-two-dimensional hole gas in a strained zinc-blende semiconductor heterostructure including both Rashba and Dresselhaus spin-orbit coupling. In the presence of uniaxial strain along the axes, we find a conserved spin quantity in the vicinity of the Fermi contours in the lowest valence subband. In contrast to previous works, this quantity meets realistic requirements for the Luttinger parameters. For more restrictive conditions, we even find a conserved spin quantity for vanishing strain, restricted to the vicinity of the Fermi surface
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
Device concepts in semiconductor spintronics make long spin lifetimes desirable, and the requirement...
We derive an effective Hamiltonian for a (001)-confined quasi-two-dimensional hole gas in a strained...
We derive an effective Hamiltonian for a (001)-confined quasi-two-dimensional hole gas in a strained...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate the possibility of spin-preserving symmetries due to the interplay of Rashba and Dres...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
According to Noether's theorem, for every symmetry in nature there is a corresponding conservation l...
We investigate the possibility of spin-preserving symmetries due to the interplay of Rashba and Dres...
We investigate the possibility of spin-preserving symmetries due to the interplay of Rashba and Dres...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
Device concepts in semiconductor spintronics make long spin lifetimes desirable, and the requirement...
We derive an effective Hamiltonian for a (001)-confined quasi-two-dimensional hole gas in a strained...
We derive an effective Hamiltonian for a (001)-confined quasi-two-dimensional hole gas in a strained...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate the possibility of spin-preserving symmetries due to the interplay of Rashba and Dres...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
We investigate ramifications of the persistent spin helix symmetry in two-dimensional hole gases in ...
According to Noether's theorem, for every symmetry in nature there is a corresponding conservation l...
We investigate the possibility of spin-preserving symmetries due to the interplay of Rashba and Dres...
We investigate the possibility of spin-preserving symmetries due to the interplay of Rashba and Dres...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconduc...
Device concepts in semiconductor spintronics make long spin lifetimes desirable, and the requirement...