Polaron pairs are intermediate electronic states that are integral to the optoelectronic conversion process in organic semiconductors. Here, we report on electrically detected spin echoes arising from direct quantum control of polaron pair spins in an organic light-emitting diode at room temperature. This approach reveals phase coherence on a microsecond time scale, and offers a direct way to probe charge recombination and dissociation processes in organic devices, revealing temperature-independent intermolecular carrier hopping on slow time scales. In addition, the long spin phase coherence time at room temperature is of potential interest for developing quantum-enhanced sensors and information processing systems which operate at room temp...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
Journal ArticleOrganic semiconductors offer a unique environment to probe the hyperfine coupling of ...
Polaron pairs are intermediate electronic states that are integral to the optoelectronic conversion ...
Polaron pairs are intermediate electronic states that are integral to the optoelectronic conversion ...
pre-printPolaron pairs are intermediate electronic states that are integral to the optoelectronic co...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
Journal ArticleSpin coherence in organic oligomer and polymer semiconductors is a crucial property i...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
Journal ArticleOrganic semiconductors offer a unique environment to probe the hyperfine coupling of ...
Polaron pairs are intermediate electronic states that are integral to the optoelectronic conversion ...
Polaron pairs are intermediate electronic states that are integral to the optoelectronic conversion ...
pre-printPolaron pairs are intermediate electronic states that are integral to the optoelectronic co...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
Journal ArticleSpin coherence in organic oligomer and polymer semiconductors is a crucial property i...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
The optical excitation of organic semiconductors not only generates charge-neutral electron-hole pai...
Journal ArticleOrganic semiconductors offer a unique environment to probe the hyperfine coupling of ...