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Electric field induced color switching in colloidal quantum dot molecules at room temperature

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arxiv 2305.08129 v1 pith:D4M4QH5A submitted 2023-05-14 cond-mat.mes-hall cond-mat.mtrl-sciphysics.chem-phphysics.optics

Electric field induced color switching in colloidal quantum dot molecules at room temperature

classification cond-mat.mes-hall cond-mat.mtrl-sciphysics.chem-phphysics.optics
keywords colorquantumcenterseffectelectric-fieldemissionfieldinduced
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Colloidal semiconductor quantum dots are robust emitters implemented in numerous prototype and commercial optoelectronic devices. However, active fluorescence color tuning, achieved so far by electric-field induced Stark effect, has been limited to a small spectral range, and accompanied by intensity reduction due to the electron-hole charge separation effect. Utilizing quantum dot molecules that manifest two coupled emission centers, we present a novel electric-field induced instantaneous color switching effect. Reversible emission color switching without intensity loss is achieved on a single particle level, as corroborated by correlated electron microscopy imaging. Simulations establish that this is due to the electron wavefunction toggling between the two centers dictated by the electric-field and affected by the coupling strength. The quantum dot molecules manifesting two coupled emission centers may be tailored to emit distinct colors, opening the path for sensitive field sensing and color switchable devices such as a novel pixel design for displays or an electric field color tunable single photon source.

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