A Versatile Ultra-Stable Platform for Optical Multidimensional Fourier-Transform Spectroscopy
arXiv:0905.0947 · doi:10.1063/1.3184103
Abstract
The JILA Multidimensional Optical Nonlinear SpecTRometer (JILA-MONSTR) is a robust, ultra-stable platform consisting nested and folded Michelson interferometers that can be actively phase stabilized. This platform generates a square of identical laser pulses that can be adjusted to have arbitrary time delay between them, while maintaining phase stability. The JILA-MONSTR provides output pulses for nonlinear excitation of materials and phase-stabilized reference pulses for heterodyne detection of the induced signal. This arrangement is ideal for performing coherent optical experiments, such as multidimensional Fourier-transform spectroscopy, which records the phase of the nonlinear signal as a function of the time delay between several of the excitation pulses. The resulting multidimensional spectrum is obtained from a Fourier transform. This spectrum can resolve, separate and isolate coherent contributions to the light-matter interactions associated with electronic excitation at optical frequencies. To show the versatility of the JILA-MONSTR, several demonstrations of two-dimensional Fourier-transform spectroscopy are presented, including an example of a phase-cycling scheme that reduces noise.
22 pages, 10 figures, journal publication
References in corpus (3)
- Polarization dependence of semiconductor exciton and biexciton contributions to phase-resolved optical two-dimensional Fourier-transform spectra
- All-optical retrieval of the global phase for two-dimensional Fourier-transform spectroscopy
- Two-dimensional correlation spectroscopy of two-exciton resonances in semiconductor quantum wells
Cited by in corpus (38)
- Direct Measurement of Exciton Valley Coherence in Monolayer WSe
- Multidimensional Coherent Photocurrent Spectroscopy of a Semiconductor Nanostructure
- Neutral and Charged Inter-Valley Biexcitons in Monolayer MoSe
- Many-body two-quantum coherences in semiconductor nanostructures
- Two-dimensional double-quantum spectra reveal collective resonances in an atomic vapor
- Coherent and Incoherent Coupling Dynamics between Neutral and Charged Excitons in Monolayer MoSe2
- Entangled Two-Photon Absorption by Atoms and Molecules: A Quantum Optics Tutorial
- Exciton-Trion Coherent Interactions in a CdTe/CdMgTe Quantum Well
- Two-dimensional Fourier-transform Spectroscopy of Potassium Vapor
- Coherent Excitonic Coupling in an Asymmetric Double InGaAs Quantum Well Arises from Many-Body Effects
- Fifth-order nonlinear optical response of excitonic states in an InAs quantum dot ensemble measured with 2D spectroscopy
- Vibrational Coupling Modifies Spectral Diffusion in Core-Shell Colloidal Quantum Dots
- Trion Valley Coherence in Monolayer Semiconductors
- Simultaneous Existence of Confined and Delocalized Vibrational Modes in Colloidal Quantum Dots
- Towards Engineering Intrinsic Linewidths and Line-Broadening in Perovskite Nanoplatelets
- Correlation and dephasing effects on the non-radiative coherence between bright excitons in an InAs QD ensemble measured with 2D spectroscopy
- Multidimensional Coherent Spectroscopy of a Semiconductor Microcavity
- Phase-modulated electronic wave-packet interferometry reveals high resolution vibronic spectra of free Rb atoms and Rb*He molecules
- Carrier Diffusion in Thin-Film CH3NH3PbI3 Perovskite Measured using Four-Wave Mixing
- Lineshape Analysis of Double-Quantum Multidimensional Coherent Spectra
- Phase-Modulated Rapid-Scanning Fluorescence-Detected Two-Dimensional Electronic Spectroscopy
- Nonlinear optics in 2D materials: from classical to quantum
- Coherent multidimensional spectroscopy in the gas phase
- Fast phase cycling in non-collinear optical two-dimensional coherent spectroscopy
- Precise pulse shaping for quantum control of strong optical transitions
- Role of Strain on the Coherent Properties of GaAs Excitons and Biexcitons
- Two-Dimensional Electronic Spectroscopy Using Incoherent Light: Theoretical Analysis
- Charge-carrier complexes in monolayer semiconductors
- Dephasing of InAs quantum dot p-shell excitons using two-dimensional coherent spectroscopy
- Coherent Contributions to Population Dynamics in a Semiconductor Microcavity
- Unlocking Quantum Control and Multi-Order Correlations via Terahertz Two-Dimensional Coherent Spectroscopy
- Signatures of four-particle correlations associated with exciton-carrier interactions in coherent spectroscopy on bulk GaAs
- Fundamentals of heterodyne wave mixing spectroscopy: a tutorial
- Overcoming experimental obstacles in two-dimensional spectroscopy of a single molecule
- Coherent Nonlinear Optical Response for High-Intensity Excitation
- Exciton-exciton Interactions -- A Quantitative Comparison Between Complimentary Phenomenological Models
- Indirect Excitons and Many-body Interactions in InGaAs Double Quantum Wells
- High-speed hyperspectral four-wave-mixing microscopy with frequency combs