Organic spectrometers are attractive for biomedicine and industrial process monitoring but are currently limited in terms of spectral selectivity and the accessible wavelength range. Here, we achieve narrowband enhancement of the below-gap near-infrared response of charge-transfer (CT) excitations in organic photodiodes by introducing them into a high-quality microcavity. The device architecture includes a nonconductive distributed Bragg reflector and thin metal electrodes, leading to the formation of sharp Tamm plasmon-polariton resonances. We demonstrate how to tailor the arising multimode spectra for spectroscopic photodetectors and present efficient single-resonance devices with remarkable line widths below 22 nm, which are p...
We discuss approaches to increase the light outcoupling efficiency in organic microcavity (MC) laser...
Spectroscopic photodetection plays a key role in many emerging applications such as context-aware op...
A novel optical sensor is proposed, based on the normal-incidence excitation of Tamm plasmons at the...
Blending organic electron donors and acceptors yields intermolecular charge-transfer states with add...
Color discrimination in photodetection is conventionally achieved using broadband-absorbing inorgani...
We present organic near-infrared photodetectors based on the absorption of charge-transfer (CT) stat...
Detection of electromagnetic signals for applications such as health, product quality monitoring or ...
Near-infrared (NIR) narrowband organic photodetectors (OPDs) can be essential building blocks for em...
Compared with the detector devices made of inorganic semiconductors, organic photodetectors are gran...
Strong light-matter coupling leads to the formation of mixed exciton-polariton states, allowing for ...
Color discrimination in photodetection is conventionally achieved using broadband-absorbing inorgani...
Incorporation of compact spectroscopic near-infrared (NIR) light detectors into various wearable and...
By employing Tamm optical states—states localized between a thin metal microdisk and a semiconductor...
Abstract Continuous monitoring of food quality, blood oxygen, or industrial processes require high‐t...
Spectrally selective, narrowband light detection is vital for full-color and Near Infrared (NIR) ima...
We discuss approaches to increase the light outcoupling efficiency in organic microcavity (MC) laser...
Spectroscopic photodetection plays a key role in many emerging applications such as context-aware op...
A novel optical sensor is proposed, based on the normal-incidence excitation of Tamm plasmons at the...
Blending organic electron donors and acceptors yields intermolecular charge-transfer states with add...
Color discrimination in photodetection is conventionally achieved using broadband-absorbing inorgani...
We present organic near-infrared photodetectors based on the absorption of charge-transfer (CT) stat...
Detection of electromagnetic signals for applications such as health, product quality monitoring or ...
Near-infrared (NIR) narrowband organic photodetectors (OPDs) can be essential building blocks for em...
Compared with the detector devices made of inorganic semiconductors, organic photodetectors are gran...
Strong light-matter coupling leads to the formation of mixed exciton-polariton states, allowing for ...
Color discrimination in photodetection is conventionally achieved using broadband-absorbing inorgani...
Incorporation of compact spectroscopic near-infrared (NIR) light detectors into various wearable and...
By employing Tamm optical states—states localized between a thin metal microdisk and a semiconductor...
Abstract Continuous monitoring of food quality, blood oxygen, or industrial processes require high‐t...
Spectrally selective, narrowband light detection is vital for full-color and Near Infrared (NIR) ima...
We discuss approaches to increase the light outcoupling efficiency in organic microcavity (MC) laser...
Spectroscopic photodetection plays a key role in many emerging applications such as context-aware op...
A novel optical sensor is proposed, based on the normal-incidence excitation of Tamm plasmons at the...