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The results confirm the extreme sensitivity of the conductance of thin semiconductor sheets to chemical changes and demonstrate how thinness plays a role.
Chakraborty, C. et al. Voltage-controlled quantum light from an atomically thin semiconductor.
Tonndorf, P. et al. Single-photon emission from localized excitons in an atomically thin semiconductor.
Jerry Moy Chow, 17, a senior at Stuyvesant, said he studied "the quantum well," a thin semiconductor structure, for his physics entry in the competition.
Chakraborty, C., Kinnischtzke, L., Goodfellow, K. M., Beams, R. & Vamivakas, A. N. Voltage-controlled quantum light from an atomically thin semiconductor.
Current topics in photochemistry and photoelectrochemistry of thin semiconductor films are presented in regards to technological applications.
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Palacios-Berraquero, C. et al. Large-scale quantum-emitter arrays in atomically thin semiconductors.
Sidler, M. et al. Fermi polaron polaritons in charge-tunable atomically thin semiconductors.
Probing dark excitons in atomically thin semiconductors via near-field coupling to surface plasmon polaritons.
Zhou, Y. et al. Probing dark excitons in atomically thin semiconductors via near-field coupling to surface plasmon polaritons.
In particular, electrical measurements in UHV (currently underway) will enable a more detailed understanding of the mechanisms of transport modulation via surface and interface modification in very thin semiconductors.
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