From organic electronics to biological systems, understanding the role of intermolecular interactions between spin pairs is a key challenge. Here we show how such pairs can be selectively addressed with combined spin and optical sensitivity. We demonstrate this for bound pairs of spin-triplet excitations formed by singlet fission, with direct applicability across a wide range of synthetic and biological systems. We show that the site sensitivity of exchange coupling allows distinct triplet pairs to be resonantly addressed at different magnetic fields, tuning them between optically bright singlet (S=0) and dark triplet quintet (S=1,2) configurations: This induces narrow holes in a broad optical emission spectrum, uncovering exchange-specific...
The formation of two triplet excitons at the cost of one photon via singlet exciton fission in organ...
Exciton-polaritons are quasiparticles with mixed photon and exciton character that demonstrate rich ...
In organic semiconductors, bi-exciton states are key intermediates in carrier-multiplication and exc...
From organic electronics to biological systems, understanding the role of intermolecular interaction...
From organic electronics to biological systems, understanding the role of intermolecular interaction...
From biological complexes to devices based on organic semiconductors, spin interactions play a key r...
High-spin states play a key role in chemical reactions found in nature. In artificial molecular syst...
Harvesting long-lived free triplets in high yields by utilizing organic singlet fission materials ca...
Entanglement of states is one of the most surprising and counterintuitive consequences of quantum me...
Entanglement of states is one of the most surprising and counter-intuitive consequences of quantum m...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
In singlet fission (SF) the initially formed correlated triplet pair state, 1(TT), may evolve toward...
We probe the interconversion of spin permutation symmetry of weakly bound electron-hole carrier pair...
In organic semiconductors, biexcitons are key intermediates in carrier multiplication and exciton an...
We demonstrate that a simple phenazine derivative can serve as a dual emitter for organic light-emit...
The formation of two triplet excitons at the cost of one photon via singlet exciton fission in organ...
Exciton-polaritons are quasiparticles with mixed photon and exciton character that demonstrate rich ...
In organic semiconductors, bi-exciton states are key intermediates in carrier-multiplication and exc...
From organic electronics to biological systems, understanding the role of intermolecular interaction...
From organic electronics to biological systems, understanding the role of intermolecular interaction...
From biological complexes to devices based on organic semiconductors, spin interactions play a key r...
High-spin states play a key role in chemical reactions found in nature. In artificial molecular syst...
Harvesting long-lived free triplets in high yields by utilizing organic singlet fission materials ca...
Entanglement of states is one of the most surprising and counterintuitive consequences of quantum me...
Entanglement of states is one of the most surprising and counter-intuitive consequences of quantum m...
Electron and hole spins in organic light-emitting diodes constitute prototypical two-level systems f...
In singlet fission (SF) the initially formed correlated triplet pair state, 1(TT), may evolve toward...
We probe the interconversion of spin permutation symmetry of weakly bound electron-hole carrier pair...
In organic semiconductors, biexcitons are key intermediates in carrier multiplication and exciton an...
We demonstrate that a simple phenazine derivative can serve as a dual emitter for organic light-emit...
The formation of two triplet excitons at the cost of one photon via singlet exciton fission in organ...
Exciton-polaritons are quasiparticles with mixed photon and exciton character that demonstrate rich ...
In organic semiconductors, bi-exciton states are key intermediates in carrier-multiplication and exc...