Two-dimensional CdSe nanoplatelets are promising lasing materials. Their large lateral areas reduce the optical gain threshold by increasing the oscillator strength and multiexciton lifetimes but also increase the gain threshold by requiring multiple band-edge excitons (>2) to reach the optical gain. We observe that the optical gain threshold of CdSe nanoplatelets at 4 K is ∼4-fold lower than that at room temperature. Transient absorption spectroscopy measurements indicate that the exciton center-of-mass coherent area is smaller than the lateral size at room temperature and extends to nearly the whole nanoplatelets at 4 K. This suggests that the reduction in the optical gain threshold at a low temperature can be attributed to exciton cohere...
Two-dimensional (2D) materials have received much attention in the past years for a wide variety of ...
Two-dimensional (2D) materials have received much attention in the past years for a wide variety of ...
We evidence excited state emission from p states well below ground state saturation in CdSe nanoplat...
Modal gain coefficient is a key figure of merit for a laser material. Previously, net modal gain coe...
Modal gain coefficient is a key figure of merit for a laser material. Previously, net modal gain coe...
Colloidal nanoplatelets (NPLs) are promising materials for lasing applications. The properties are u...
Colloidal nanoplatelets (NPLs) are promising materials for lasing applications. The properties are u...
Solution processable nanomaterials for photonic applications, in particular light emission and lasin...
Recently, a report by Grim et al.1 highlighted the peculiar carrier dynamics in CdSe platelets as th...
Recently, a report by Grim et al.1 highlighted the peculiar carrier dynamics in CdSe platelets as th...
2D materials are considered for applications that require strong light-matter interaction because of...
Colloidal quantum dots are nanometer sized semiconductor crystalllites obtained by solution-based sy...
2D materials are considered for applications that require strong light-matter interaction because of...
2D materials are considered for applications that require strong light-matter interaction because of...
Colloidal semiconducting nanocrystals are efficient, stable and spectrally tunable emitters, but ach...
Two-dimensional (2D) materials have received much attention in the past years for a wide variety of ...
Two-dimensional (2D) materials have received much attention in the past years for a wide variety of ...
We evidence excited state emission from p states well below ground state saturation in CdSe nanoplat...
Modal gain coefficient is a key figure of merit for a laser material. Previously, net modal gain coe...
Modal gain coefficient is a key figure of merit for a laser material. Previously, net modal gain coe...
Colloidal nanoplatelets (NPLs) are promising materials for lasing applications. The properties are u...
Colloidal nanoplatelets (NPLs) are promising materials for lasing applications. The properties are u...
Solution processable nanomaterials for photonic applications, in particular light emission and lasin...
Recently, a report by Grim et al.1 highlighted the peculiar carrier dynamics in CdSe platelets as th...
Recently, a report by Grim et al.1 highlighted the peculiar carrier dynamics in CdSe platelets as th...
2D materials are considered for applications that require strong light-matter interaction because of...
Colloidal quantum dots are nanometer sized semiconductor crystalllites obtained by solution-based sy...
2D materials are considered for applications that require strong light-matter interaction because of...
2D materials are considered for applications that require strong light-matter interaction because of...
Colloidal semiconducting nanocrystals are efficient, stable and spectrally tunable emitters, but ach...
Two-dimensional (2D) materials have received much attention in the past years for a wide variety of ...
Two-dimensional (2D) materials have received much attention in the past years for a wide variety of ...
We evidence excited state emission from p states well below ground state saturation in CdSe nanoplat...