Ultrafast Chirality-dependent Dynamics from Helicity-resolved Transient Absorption Spectroscopy
arXiv:2501.02308 · doi:10.1039/d4nr03682d
Abstract
Chirality, a pervasive phenomenon in nature, is widely studied across diverse fields including the origins of life, chemical catalysis, drug discovery, and physical optoelectronics. The investigations of natural chiral materials have been constrained by their intrinsically weak chiral effects. Recently, significant progress has been made in the fabrication and assembly of low-dimensional micro and nanoscale chiral materials and their architectures, leading to the discovery of novel optoelectronic phenomena such as circularly polarized light emission, spin and charge flip, advocating great potential for applications in quantum information, quantum computing, and biosensing. Despite these advancements, the fundamental mechanisms underlying the generation, propagation, and amplification of chirality in low-dimensional chiral materials and architectures remain largely unexplored. To tackle these challenges, we focus on employing ultrafast spectroscopy to investigate the dynamics of chirality evolution, with the aim of attaining a more profound understanding of the microscopic mechanisms governing chirality generation and amplification. This review thus provides a comprehensive overview of the chiral micro-/nano-materials, including two-dimensional transition metal dichalcogenides (TMDs), chiral halide perovskites, and chiral metasurfaces, with a particular emphasis on the physical mechanism. This review further explores the advancements made by ultrafast chiral spectroscopy research, thereby paving the way for innovative devices in chiral photonics and optoelectronics.
11 Figures
References in corpus (56)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Atomically thin MoS2: A new direct-gap semiconductor
- Two Dimensional Atomic Crystals
- Spintronics: Fundamentals and applications
- Coupled spin and valley physics in monolayers of MoS2 and other group-VI dichalcogenides
- Control of valley polarization in monolayer MoS2 by optical helicity
- Valley polarization in MoS2 monolayers by optical pumping
- Two-Dimensional Material Nanophotonics
- Observation of tightly bound trions in monolayer MoS2
- MoS_2 as an ideal material for valleytronics: valley-selective circular dichroism and valley Hall effect
- Exciton Binding Energy and Nonhydrogenic Rydberg Series in Monolayer WS2
- Ultrafast Charge Transfer in Atomically Thin MoS2/WS2 Heterostructures
- Valley contrasting physics in graphene: magnetic moment and topological transport
- Excitons in atomically thin transition metal dichalcogenides
- Mobility engineering and metal-insulator transition in monolayer MoS2
- Electrical Control of Two-Dimensional Neutral and Charged Excitons in a Monolayer Semiconductor
- Optical Generation of Excitonic Valley Coherence in Monolayer WSe2
- Direct observation of the transition from indirect to direct bandgap in atomically thin epitaxial MoSe2
- Measurement of the optical dielectric function of transition metal dichalcogenide monolayers: MoS2, MoSe2, WS2 and WSe2
- Tightly bound excitons in monolayer WSe2
- Strong light-matter coupling in two-dimensional atomic crystals
- Steric engineering of metal-halide perovskites with tunable optical band gaps
- Optical signature of symmetry variations and spin-valley coupling in atomically thin tungsten dichalcogenides
- Bright triplet excitons in lead halide perovskites
- Exciton Binding Energy of Monolayer WS2
- Valley-selective optical Stark effect in monolayer WS2
- Metasurfaces with maximum chirality empowered by bound states in the continuum
- Ultrafast optical spectroscopy of strongly correlated materials and high-temperature superconductors: a non-equilibrium approach
- Robust optical emission polarization in MoS2 monolayers through selective valley excitation
- Large spin splitting in the conduction band of transition metal dichalcogenide monolayers
- Probing excitonic states in ultraclean suspended two-dimensional semiconductors by photocurrent spectroscopy
- Phonon coherences reveal the polaronic character of excitons in two-dimensional lead-halide perovskites
- Exciton-exciton annihilation in MoSe2 monolayers
- Direct observation of spin-polarised bulk bands in an inversion-symmetric semiconductor
- Valley depolarization due to inter- and intra-valley electron-hole exchange interactions in monolayer MoS
- Measurement of high exciton binding energy in the monolayer transition-metal dichalcogenides WS2 and WSe2
- Ultrafast Generation of Pseudo-magnetic Field for Valley Excitons in WSe2 Monolayers
- Temperature-dependent excitonic photoluminescence Excited by Two-Photon Absorption in Perovskite CsPbBr3 Quantum Dots
- Splitting between Bright and Dark excitons in Transition Metal Dichalcogenide Monolayers
- Absorption of Light by Excitons and Trions in Monolayers of Metal Dichalcogenide MoS: Experiments and Theory
- Trion Formation Dynamics in Monolayer Transition Metal Dichalcogenides
- Spin-orbit engineering in transition metal dichalcogenide alloy monolayers
- Electronic Structure of Epitaxial Single-Layer MoS
- Hot carriers generated by plasmons: where are they are generated and where do they go from there?
- Giant Zeeman splitting inducing near-unity valley polarization in van der Waals heterostructures
- Long-Lived Valley Polarization of Intra-Valley Trions in Monolayer WSe2
- Highly Valley-Polarized Singlet and Triplet Interlayer Excitons in van der Waals Heterostructure
- Transient optical symmetry breaking for ultrafast broadband dichroism in plasmonic metasurfaces
- Observation of Inter-layer Excitons in MoSe2 Single Crystals
- Long valley lifetime of free carriers in monolayer WSe2
- Observation of exciton-exciton interaction mediated valley depolarization in monolayer MoSe
- Optical Stark Effect and Dressed Excitonic States in a Mn-doped Quantum Dot
- Structural Chirality and Electronic Chirality in Quantum Materials
- Exciton valley depolarization in monolayer transition-metal dichalcogenides
- Universal imprinting of chirality with chiral light by employing plasmonic metastructures