One of the most recent developments at the forefront of nanotechnology is the attempt to exploit quantum phenomena in nanometer scale materials, exploring novel applications of quantum effects. An effective exploitation of quantum phenomena must necessarily pass through a deep understanding of how to generate, manipulate, and characterize coherent superposition of quantum states in the nanosystems. However, despite the lively interest in this topic, the study of coherent effects in nanomaterials still represents relatively unexplored territory. Here we report an investigation on the ultrafast coherent dynamics of colloidal CdSe quantum dots (QDs) by the mean of two- dimensional electronic spectroscopy (2DES). The time evolution of specific ...
Two-quantum variants of two-dimensional electronic spectroscopy (2DES) have previously been used to ...
Advances in ultrafast spectroscopy can provide access to dynamics involving nontrivial quantum corre...
Optical pump-probe spectroscopy with 6-fs pulses elucidates the 1Se1S3/2–1Se2S3/2 excitonic quantum ...
One of the most recent developments at the forefront of nanotechnology is the attempt to exploit qua...
The full blossoming of quantum technologies requires the availability of easy-to-prepare materials w...
peer reviewedWe show in a joint experimental and theoretical study that ultrafast femto-second (fs) ...
Coherent Multi-dimensional Spectroscopy is ideally suited to investigate many-body effects in semico...
Coherent superpositions among eigenstates are of interest in fields as diverse as photosynthesis and...
One-quantum and zero-quantum multi-dimensional coherent spectroscopy are used to study CdSe colloida...
The creation and manipulation of quantum superpositions is a fundamental goal for the development of...
Coherent multidimensional spectroscopy (CMDS) is the most complete nonlinear optical technique based...
Semiconductor nanomaterials are poised to revolutionize the field of electronics. Their low-cost syn...
Advances in ultrafast spectroscopy can provide access to dynamics involving nontrivial quantum corre...
peer reviewedInterdot coherent excitonic dynamics in nanometric colloidal CdSe quantum dots (QD) dim...
Colloidal semiconductor nanocrystals, also called quantum dots, show properties of absorption and lu...
Two-quantum variants of two-dimensional electronic spectroscopy (2DES) have previously been used to ...
Advances in ultrafast spectroscopy can provide access to dynamics involving nontrivial quantum corre...
Optical pump-probe spectroscopy with 6-fs pulses elucidates the 1Se1S3/2–1Se2S3/2 excitonic quantum ...
One of the most recent developments at the forefront of nanotechnology is the attempt to exploit qua...
The full blossoming of quantum technologies requires the availability of easy-to-prepare materials w...
peer reviewedWe show in a joint experimental and theoretical study that ultrafast femto-second (fs) ...
Coherent Multi-dimensional Spectroscopy is ideally suited to investigate many-body effects in semico...
Coherent superpositions among eigenstates are of interest in fields as diverse as photosynthesis and...
One-quantum and zero-quantum multi-dimensional coherent spectroscopy are used to study CdSe colloida...
The creation and manipulation of quantum superpositions is a fundamental goal for the development of...
Coherent multidimensional spectroscopy (CMDS) is the most complete nonlinear optical technique based...
Semiconductor nanomaterials are poised to revolutionize the field of electronics. Their low-cost syn...
Advances in ultrafast spectroscopy can provide access to dynamics involving nontrivial quantum corre...
peer reviewedInterdot coherent excitonic dynamics in nanometric colloidal CdSe quantum dots (QD) dim...
Colloidal semiconductor nanocrystals, also called quantum dots, show properties of absorption and lu...
Two-quantum variants of two-dimensional electronic spectroscopy (2DES) have previously been used to ...
Advances in ultrafast spectroscopy can provide access to dynamics involving nontrivial quantum corre...
Optical pump-probe spectroscopy with 6-fs pulses elucidates the 1Se1S3/2–1Se2S3/2 excitonic quantum ...