Efficiency of band edge optical transitions of 2D monolayer materials: A high-throughput computational study
arXiv:2409.18287 · doi:10.1103/PhysRevB.111.195426
Abstract
We performed high-throughput density functional theory calculations of optical matrix elements between band edges across a diverse set of non-magnetic two-dimensional monolayers with direct band gaps. Materials were ranked as potential optical emitters, leading to the identification of transition-metal nitrogen halides (ZrNCl, TiNBr, TiNCl) and bismuth chalcohalides (BiTeCl) with optical coupling comparable to or exceeding MoS. Despite strong in-plane dipole transitions, most two-dimensional materials underperform bulk semiconductors due to the absence of out-of-plane components. To elucidate interband transitions, we introduced the orbital overlap tensor and established a correlation between anomalous Born effective charges and optical coupling, linking charge redistribution to transition strength. We also identified chalcogen-mediated - transition as a key mechanism enabling optical responses in transition-metal dichalcogenides. We derived an analytical radiative recombination model incorporating multi-valley effects and found that excitonic corrections are essential for accurate lifetime predictions. Some direct-gap materials exhibit dark excitons as their lowest-energy states, classifying them as quasi-direct band gap semiconductors, which is critical for tuning excitonic recombination dynamics.
36 pages, 5 figures, 3 tables, and supporting information
References in corpus (10)
- Valley polarization in MoS2 monolayers by optical pumping
- Accurate and efficient algorithm for Bader charge integration
- Fast and broadband photoresponse of few-layer black phosphorus field-effect transistors
- k.p theory for two-dimensional transition metal dichalcogenide semiconductors
- Robust optical emission polarization in MoS2 monolayers through selective valley excitation
- Electrical Control of Optical Properties of Monolayer MoS
- Implementation of screened hybrid functionals based on the Yukawa potential within the LAPW basis set
- Efficient approach to solve the Bethe-Salpeter equation for excitonic bound states
- Exciton Trapping Is Responsible for the Long Apparent Lifetime in Acid-Treated MoS2
- Length-gauge optical matrix elements in WIEN2k