We have found that strong superchiral fields created by surface plasmon resonance exist in hot spots of nonchiral plasmonic structure, which showed a chiral density greater than that of circularly polarized light by hundreds of times. We have demonstrated a direct correlation between the chirality of the local field and the circular dichroism (CD) response at the plasmon resonance bands induced by chiral molecules in the hot spots. Our results reveal that the wavelength-dependent superchiral fields in the hot spots can play a crucial role in the determination of the plasmonic CD effect. This finding is in contrast to the currently accepted physical model in which the electromagnetic field intensity in hot spots is a key factor to determine ...
Chiral plasmonic nanostructures enable ≤pg detection and characterization of biomaterials. The sensi...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
Circular dichroism (CD), the difference in absorption of two opposite circularly polarized light sou...
Light scattering from chiral plasmonic structures can create near fields with an asymmetry greater t...
In this work, we demonstrate superchiral light generation based on achiral plasmonic surfaces. At re...
We analyze theoretically the interaction between chiral molecules and localized surface plasmons in ...
A novel route of superchiral near-field generation is demonstrated based on geometrically achiral sy...
Detection and differentiation of enantiomers in small quantities are crucially important in many sci...
Surface-enhanced circular dichroism (SECD) of chiral molecules adsorbed on plasmonic nanostructures ...
Plasmon-enhanced circular dichroism has established itself as a promising candidate to push the limi...
Recent efforts in the field of surface-enhanced spectroscopies have focused on the paradigm of "supe...
Copyright © 2010 Nature Publishing GroupThe spectroscopic analysis of large biomolecules is importan...
The plasmonic chiroptical effect has been used to manipulate chiral states of light, where the stron...
The theory of calculating circular dichroism (CD) of chiral molecules in a finite cluster with arbit...
This is the final version of the article. Available from American Physical Society via the DOI in th...
Chiral plasmonic nanostructures enable ≤pg detection and characterization of biomaterials. The sensi...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
Circular dichroism (CD), the difference in absorption of two opposite circularly polarized light sou...
Light scattering from chiral plasmonic structures can create near fields with an asymmetry greater t...
In this work, we demonstrate superchiral light generation based on achiral plasmonic surfaces. At re...
We analyze theoretically the interaction between chiral molecules and localized surface plasmons in ...
A novel route of superchiral near-field generation is demonstrated based on geometrically achiral sy...
Detection and differentiation of enantiomers in small quantities are crucially important in many sci...
Surface-enhanced circular dichroism (SECD) of chiral molecules adsorbed on plasmonic nanostructures ...
Plasmon-enhanced circular dichroism has established itself as a promising candidate to push the limi...
Recent efforts in the field of surface-enhanced spectroscopies have focused on the paradigm of "supe...
Copyright © 2010 Nature Publishing GroupThe spectroscopic analysis of large biomolecules is importan...
The plasmonic chiroptical effect has been used to manipulate chiral states of light, where the stron...
The theory of calculating circular dichroism (CD) of chiral molecules in a finite cluster with arbit...
This is the final version of the article. Available from American Physical Society via the DOI in th...
Chiral plasmonic nanostructures enable ≤pg detection and characterization of biomaterials. The sensi...
We report a new approach for creating chiral plasmonic nanomaterials. A previously unconsidered, far...
Circular dichroism (CD), the difference in absorption of two opposite circularly polarized light sou...