Isolators, or optical diodes, are devices enabling unidirectional light propagation by using non-reciprocal optical materials, namely materials able to break Lorentz reciprocity. The realization of isolators at terahertz frequencies is a very important open challenge made difficult by the intrinsically lossy propagation of terahertz radiation in current non-reciprocal materials. Here we report the design, fabrication and measurement of a terahertz non-reciprocal isolator for circularly polarized waves based on magnetostatically biased monolayer graphene, operating in reflection. The device exploits the non-reciprocal optical conductivity of graphene and, in spite of its simple design, it exhibits almost 20 dB of isolation and only 7.5 dB of...
We propose a novel graphene-dielectric-based meta-surface for manipulating the polarization of the i...
Based on graphene metasurface, this paper proposes a broadband multifunctional reflective polarizati...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
In this work, we theoretically investigate non-reciprocal propagation of terahertz (THz) waves throu...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
Optical isolators will play a critical role in next-generation photonic circuits, but their on-chip ...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
Terahertz (THz) radiation is ideally suited for noninvasive testing and short-distance data transmis...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
Viewing the trend of miniaturization and integration in modern electronic device design, a reconfigu...
Viewing the trend of miniaturization and integration in modern electronic device design, a reconfigu...
Active control of terahertz (THz) wave polarization state is of great significance for sensitive det...
We propose a novel graphene-dielectric-based meta-surface for manipulating the polarization of the i...
Based on graphene metasurface, this paper proposes a broadband multifunctional reflective polarizati...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...
In this work, we theoretically investigate non-reciprocal propagation of terahertz (THz) waves throu...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
Optical isolators will play a critical role in next-generation photonic circuits, but their on-chip ...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
In the present article we numerically investigated the magneto-optical behaviour of a sub-wavelength...
Terahertz (THz) radiation is ideally suited for noninvasive testing and short-distance data transmis...
Active control of polarization states of electromagnetic waves is highly desirable because of its di...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
Viewing the trend of miniaturization and integration in modern electronic device design, a reconfigu...
Viewing the trend of miniaturization and integration in modern electronic device design, a reconfigu...
Active control of terahertz (THz) wave polarization state is of great significance for sensitive det...
We propose a novel graphene-dielectric-based meta-surface for manipulating the polarization of the i...
Based on graphene metasurface, this paper proposes a broadband multifunctional reflective polarizati...
Active control of chirality in artificial media such as metamaterials is fundamental in many scienti...