We investigate the nonresonant all-optical switching of magnetization. We treat the inverse Faraday effect (IFE) theoretically in terms of the spin-selective optical Stark effect for linearly or circularly polarized light. In the dilute magnetic semiconductors (Ga,Mn)As, strong laser pulses below the band gap induce effective magnetic fields of several teslas in a direction which depends on the magnetization direction as well as the light polarization and direction. Our theory demonstrates that the polarized light catalyzes the angular momentum transfer between the lattice and the magnetization.QN/Quantum NanoscienceApplied Science
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
Nonresonant circularly polarized electromagnetic radiation can exert torques on magnetizations by th...
Circularly polarized laser pulses that excite electron-hole pairs across the band gap of (III,Mn)V f...
Nonresonant circularly polarized electromagnetic radiation can exert torques on magnetizations by th...
of optical manipulation of ferromagnetism and spin-based photonics (Hiro Munekata) An electronic sys...
Circularly polarized laser pulses that excite electron-hole pairs across the band gap of (III,Mn)V f...
We provide a spin and orbital angular momentum representation of the inverse Faraday effect in a met...
The thesis explores three different approaches for the reciprocal manipulation of polarized light an...
Ultrafast non-thermal manipulation of magnetization by light relies on either indirect coupling of t...
We theoretically study the mechanism of the all-optical magnetic switching by combining the Rashba e...
The interaction of sub-picosecond laser pulses with magnetically ordered materials has developed int...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
Nonresonant circularly polarized electromagnetic radiation can exert torques on magnetizations by th...
Circularly polarized laser pulses that excite electron-hole pairs across the band gap of (III,Mn)V f...
Nonresonant circularly polarized electromagnetic radiation can exert torques on magnetizations by th...
of optical manipulation of ferromagnetism and spin-based photonics (Hiro Munekata) An electronic sys...
Circularly polarized laser pulses that excite electron-hole pairs across the band gap of (III,Mn)V f...
We provide a spin and orbital angular momentum representation of the inverse Faraday effect in a met...
The thesis explores three different approaches for the reciprocal manipulation of polarized light an...
Ultrafast non-thermal manipulation of magnetization by light relies on either indirect coupling of t...
We theoretically study the mechanism of the all-optical magnetic switching by combining the Rashba e...
The interaction of sub-picosecond laser pulses with magnetically ordered materials has developed int...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...
International audienceWe provide a spin and orbital angular momentum representation of the inverse F...