← Volver a resultados
Ficha bibliográfica · Consulta y acceso
Artículo

Optical control of the spin of a magnetic atom in a semiconductor quantum dot

Besombes L. et al · Wiley · 2015

Acceso abierto disponible
Lectura rápida. Revisá los datos básicos del recurso y luego accedé al contenido desde el botón principal. En esta ficha solo se muestra la información necesaria para identificar la obra, citarla y abrirla.

Acceso al recurso

Entrá al contenido desde la opción principal o elegí otra fuente disponible.

Acceso principal

Acceso abierto disponible

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Abrir recurso

Resumen

Descripción general del contenido del recurso.

The control of single spins in solids is a key but challenging step for any spin-based solid-state quantumcomputing device. Thanks to their expected long coherence time, localized spins on magnetic atoms in a semiconductor host could be an interesting media to store quantum information in the solid state. Optical probing and control of the spin of individual or pairs of Manganese (Mn) atoms (S = 5/2) have been obtained in II-VI and IIIV semiconductor quantum dots during the last years. In this paper, we review recently developed optical control experiments of the spin of an individual Mn atoms in II-VI semiconductor self-assembled or strain-free quantum dots (QDs).We first show that the fine structure of the Mn atom and especially a strained induced magnetic anisotropy is the main parameter controlling the spin memory of the magnetic atom at zero magnetic field. We then demonstrate that the energy of any spin state of a Mn atom or pairs of Mn atom can be independently tuned by using the optical Stark effect induced by a resonant laser field. The strong coupling with the resonant laser field modifies the Mn fine structure and consequently its dynamics.We then describe the spin dynamics of a Mn atom under this strong resonant optical excitation. In addition to standard optical pumping expected for a resonant excitation, we show that the Mn spin population can be trapped in the state which is resonantly excited. This effect is modeled considering the coherent spin dynamics of the coupled electronic and nuclear spin of the Mn atom optically dressed by a resonant laser field. Finally, we discuss the spin dynamics of a Mn atom in strain-free QDs and show that these structures should permit a fast optical coherent control of an individual Mn spin.

Cómo citar

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, B. L. E. (2015). Optical control of the spin of a magnetic atom in a semiconductor quantum dot. https://doi.org/10.1515/nanoph-2015-0003

MLA

al, Besombes L. et. "Optical control of the spin of a magnetic atom in a semiconductor quantum dot." 2015. https://doi.org/10.1515/nanoph-2015-0003.

Chicago

al, Besombes L. et. 2015. "Optical control of the spin of a magnetic atom in a semiconductor quantum dot.". https://doi.org/10.1515/nanoph-2015-0003.

Harvard

al, B. L. E. 2015, Optical control of the spin of a magnetic atom in a semiconductor quantum dot, Wiley, available at: https://doi.org/10.1515/nanoph-2015-0003 [Accessed 30 Jun. 2026].

Compartir e imprimir

Guardá la ficha, copiá su enlace permanente o imprimila como PDF.

Exportar referencia

Si usás un gestor bibliográfico, podés exportar el registro en los formatos más comunes.

Detalles del recurso

Información bibliográfica útil para confirmar que se trata del material correcto.

Título
Optical control of the spin of a magnetic atom in a semiconductor quantum dot
Autor / colaboradores
Besombes L. et al
Editorial
Wiley
Año de publicación
2015
ISSN
2192-8606
ISSN
2192-8606
Idioma
eng
Copiado