Active control of polarization states of electromagnetic waves is highly desirable because of its diverse applications in information processing, telecommunications, and spectroscopy. However, despite the recent advances using artificial materials, most active polarization control schemes require optical stimuli necessitating complex optical setups. We experimentally demonstrate an alternative-direct electrical tuning of the polarization state of terahertz waves. Combining a chiral metamaterial with a gated single-layer sheet of graphene, we show that transmission of a terahertz wave with one circular polarization can be electrically controlled without affecting that of the other circular polarization, leading to large-intensity modulation ...
Abstract We present a theoretical model of optically tunable graphene-based structure for polarizat...
Although recent progress in metasurfaces has shown great promise for applications, optical propertie...
We investigate the modulation performance of a metamaterial/graphene optoelectronic device in the TH...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
Optoelectronic modulators that operate by the electrical tuning of plasmonic resonator structures ha...
Optoelectronic modulators that operate by the electrical tuning of plasmonic resonator structures ha...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
Terahertz (THz) radiation is ideally suited for noninvasive testing and short-distance data transmis...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
Active control of terahertz (THz) wave polarization state is of great significance for sensitive det...
Abstract Active control of chirality in the terahertz frequency range is of great imp...
We demonstrate an electrically tunable polarizer for terahertz (THz) frequency electromagnetic waves...
Abstract We present a theoretical model of optically tunable graphene-based structure for polarizat...
Although recent progress in metasurfaces has shown great promise for applications, optical propertie...
We investigate the modulation performance of a metamaterial/graphene optoelectronic device in the TH...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
Optoelectronic modulators that operate by the electrical tuning of plasmonic resonator structures ha...
Optoelectronic modulators that operate by the electrical tuning of plasmonic resonator structures ha...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
Terahertz (THz) radiation is ideally suited for noninvasive testing and short-distance data transmis...
Terahertz (THz) science and technology has experienced tremendous progress in recent years, such as ...
Active control of terahertz (THz) wave polarization state is of great significance for sensitive det...
Abstract Active control of chirality in the terahertz frequency range is of great imp...
We demonstrate an electrically tunable polarizer for terahertz (THz) frequency electromagnetic waves...
Abstract We present a theoretical model of optically tunable graphene-based structure for polarizat...
Although recent progress in metasurfaces has shown great promise for applications, optical propertie...
We investigate the modulation performance of a metamaterial/graphene optoelectronic device in the TH...