The perfect absorption of light in subwavelength thickness layers generally relies on exotic materials, metamaterials, or thick metallic gratings. Here we demonstrate that total light absorption can be achieved in ultrathin gratings composed of conventional materials, including relatively weakly absorbing semiconductors, which are compatible with optoelectronic applications such as photodetectors and optical modulators. We fabricate a 41 nm thick antimony sulphide grating structure that has a measured absorptance of A 99.3% at a visible wavelength of 591 nm, in excellent agreement with theory. We infer that the absorption within the grating is A 98.7%, with only A 0.6% within the silver mirror. A planar reference sample absorbs ...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
© 2015 IEEE. We consider the conditions for perfect absorption in uniform thin-films and in thin gra...
The optical properties of semiconductors are typically considered intrinsic and fixed. Here we lever...
The perfect absorption of light in subwavelength thickness layers generally relies on exotic materia...
© 2016 Optical Society of America. The perfect absorption of light in subwavelength thickness layers...
We show that perfect absorption can be achieved in ultra-thin gratings composed of weakly absorbing ...
© OSA 2015. We show that perfect absorption can be achieved in ultra-thin gratings composed of weakl...
International audienceExtremely shallow lamellar metallic gratings are shown to totally absorb incid...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
In 1934, Wilhelm Woltersdorff demonstrated that the absorption of light in an ultrathin, freestandin...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We consider the conditions for perfect absorption in uniform thin-films and in thin gratings. We fin...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
© 2015 IEEE. We consider the conditions for perfect absorption in uniform thin-films and in thin gra...
The optical properties of semiconductors are typically considered intrinsic and fixed. Here we lever...
The perfect absorption of light in subwavelength thickness layers generally relies on exotic materia...
© 2016 Optical Society of America. The perfect absorption of light in subwavelength thickness layers...
We show that perfect absorption can be achieved in ultra-thin gratings composed of weakly absorbing ...
© OSA 2015. We show that perfect absorption can be achieved in ultra-thin gratings composed of weakl...
International audienceExtremely shallow lamellar metallic gratings are shown to totally absorb incid...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
En col·laboració amb la Universitat de Barcelona (UB), la Universitat Autònoma de Barcelona (UAB)i l...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
In 1934, Wilhelm Woltersdorff demonstrated that the absorption of light in an ultrathin, freestandin...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We consider the conditions for perfect absorption in uniform thin-films and in thin gratings. We fin...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
We demonstrate near-unity, broadband absorbing optoelectronic devices using sub-15 nm thick transiti...
© 2015 IEEE. We consider the conditions for perfect absorption in uniform thin-films and in thin gra...
The optical properties of semiconductors are typically considered intrinsic and fixed. Here we lever...