We show that an arbitrary body or aggregate can be made perfectly absorbing at discrete frequencies if a precise amount of dissipation is added under specific conditions of coherent monochromatic illumination. This effect arises from the interaction of optical absorption and wave interference and corresponds to moving a zero of the elastic S matrix onto the real wave vector axis. It is thus the time-reversed process of lasing at threshold. The effect is demonstrated in a simple Si slab geometry illuminated in the 500–900 nm range. Coherent perfect absorbers act as linear, absorptive interferometers, which may be useful as detectors, transducers, and switches.Published versio
We exploit the versatility provided by metal-dielectric composites to demonstrate controllable coher...
The absorption of electromagnetic energy by a material is a phenomenon that underlies many applicati...
The absorption of electromagnetic energy by a material is a phenomenon that underlies many applicati...
Recent works [Chong et al., Phys. Rev. Lett. 105, 053901 (2010); Wan et al., Science 331, 889 (2011)...
Recent works [Chong et al., Phys. Rev. Lett. 105, 053901 (2010); Wan et al., Science 331, 889 (2011)...
Recent works [Chong et al., Phys. Rev. Lett. 105, 053901 (2010); Wan et al., Science 331, 889 (2011)...
Abstract: We experimentally demonstrate a new coherent absorption phenomenon, through which a planar...
We experimentally demonstrate a new coherent absorption phenomenon - a time-reversed analogue of 'La...
We experimentally demonstrate a new coherent absorption phenomenon, through which a planar photonic ...
Time reversal inverts the direction of light propagation and converts gain into loss. Under time rev...
We demonstrate for the first time that a planar photonic metamaterial (a single layer of nanostructu...
Coherent perfect absorption (CPA), also known as time-reversed laser, is a wave phenomenon resulting...
Absorption of light is directly associated with dissipative processes in a material. In suitably tai...
Coherent perfect absorption (CPA), also known as time-reversed laser, is a wave phenomenon resulting...
Coherent perfect absorption (CPA), also known as time-reversed laser, is a wave phenomenon resulting...
We exploit the versatility provided by metal-dielectric composites to demonstrate controllable coher...
The absorption of electromagnetic energy by a material is a phenomenon that underlies many applicati...
The absorption of electromagnetic energy by a material is a phenomenon that underlies many applicati...
Recent works [Chong et al., Phys. Rev. Lett. 105, 053901 (2010); Wan et al., Science 331, 889 (2011)...
Recent works [Chong et al., Phys. Rev. Lett. 105, 053901 (2010); Wan et al., Science 331, 889 (2011)...
Recent works [Chong et al., Phys. Rev. Lett. 105, 053901 (2010); Wan et al., Science 331, 889 (2011)...
Abstract: We experimentally demonstrate a new coherent absorption phenomenon, through which a planar...
We experimentally demonstrate a new coherent absorption phenomenon - a time-reversed analogue of 'La...
We experimentally demonstrate a new coherent absorption phenomenon, through which a planar photonic ...
Time reversal inverts the direction of light propagation and converts gain into loss. Under time rev...
We demonstrate for the first time that a planar photonic metamaterial (a single layer of nanostructu...
Coherent perfect absorption (CPA), also known as time-reversed laser, is a wave phenomenon resulting...
Absorption of light is directly associated with dissipative processes in a material. In suitably tai...
Coherent perfect absorption (CPA), also known as time-reversed laser, is a wave phenomenon resulting...
Coherent perfect absorption (CPA), also known as time-reversed laser, is a wave phenomenon resulting...
We exploit the versatility provided by metal-dielectric composites to demonstrate controllable coher...
The absorption of electromagnetic energy by a material is a phenomenon that underlies many applicati...
The absorption of electromagnetic energy by a material is a phenomenon that underlies many applicati...