A holistic view of the dynamics of long-lived valley polarized dark excitonic states in monolayer WS<sub>2</sub>.

Zhu, Xing; Bacon, David R; Pareek, Vivek; Madéo, Julien; Taniguchi, Takashi; Watanabe, Kenji; Man, Michael K L; Dani, Keshav M · Nat Commun · 2025

basic_science · Level V

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Abstract

With their long lifetime and protection against decoherence, dark excitons in monolayer semiconductors offer a promising route for quantum technologies. Optical techniques have previously observed dark excitons with a long-lived valley polarization. However, several aspects remain unknown, such as the populations and time evolution of the different valley-polarized dark excitons and the role of excitation conditions. Here, using time- and angle-resolved photoemission spectroscopy, we obtain a holistic view of the dynamics after valley-selective photoexcitation. By varying experimental conditions, we reconcile between the rapid valley depolarization previously reported in TR-ARPES, and the observation of long-lived valley polarized dark excitons in optical studies. For the latter, we find that momentum-dark excitons largely dominate at early times sustaining a 40% degree of valley polarization, while valley-polarized spin-dark states dominate at longer times. Our measurements provide the timescales and how the different dark excitons contribute to the previously observed long-lived valley polarization in optics.