Because of their outstanding characteristics, micro/nano-mechanical (MM) structures have found a plethora of applications in wireless communications and sensing. Many of these MM structures utilize mechanical vibrations (or phonons) at megahertz or gigahertz frequencies for their operation. On the other hand, the periodic atomic structure of crystals is the fundamental phenomenon behind the new era of electronics technology. Such atomic arrangements lead to a periodic electric potential that modifies the propagation of electrons in the crystals. In some crystals, e.g. silicon (Si), this modification leads to an electronic band gap (EBG), which is a range of energies electrons can not propagate with. Discovering EBGs has made a revolution ...
This thesis explores numerically structures that can act as phononic orphotonic materials. A key fea...
Issued as final reportThis NSF-supported research is directed toward realizing and characterizing tw...
13 pages, 4 main text figures, 6 appendix figuresNanophononics has the potential for information tra...
Micro-scale phononic crystals are micro-electro-mechanical-systems (MEMS) made of one material perio...
© 2009 American Institute of Physics. The electronic version of this article is the complete one and...
© 2008 American Institute of Physics. The electronic version of this article is the complete one and...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Phononic crystals (or acoustic crystals) are the acoustic wave analogue of photonic crystals. Here a...
International audiencePhononic crystals (PnC) are periodic structures that have an ability to forbid...
We discuss the simultaneous existence of phononic and photonic band gaps in two types of phononic cr...
Controlling the vibrations in solids is crucial to tailor their mechanical properties and their inte...
Nanophononics has the potential for information transfer, in an analogous manner to its photonic and...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
International audienceWe show the evidence of the existence of large complete phononic band gaps (CP...
This thesis explores numerically structures that can act as phononic orphotonic materials. A key fea...
Issued as final reportThis NSF-supported research is directed toward realizing and characterizing tw...
13 pages, 4 main text figures, 6 appendix figuresNanophononics has the potential for information tra...
Micro-scale phononic crystals are micro-electro-mechanical-systems (MEMS) made of one material perio...
© 2009 American Institute of Physics. The electronic version of this article is the complete one and...
© 2008 American Institute of Physics. The electronic version of this article is the complete one and...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Phononic crystals (or acoustic crystals) are the acoustic wave analogue of photonic crystals. Here a...
International audiencePhononic crystals (PnC) are periodic structures that have an ability to forbid...
We discuss the simultaneous existence of phononic and photonic band gaps in two types of phononic cr...
Controlling the vibrations in solids is crucial to tailor their mechanical properties and their inte...
Nanophononics has the potential for information transfer, in an analogous manner to its photonic and...
Phononic crystals and acoustic metamaterials are heterogeneous materials that enable manipulation of...
International audienceWe show the evidence of the existence of large complete phononic band gaps (CP...
This thesis explores numerically structures that can act as phononic orphotonic materials. A key fea...
Issued as final reportThis NSF-supported research is directed toward realizing and characterizing tw...
13 pages, 4 main text figures, 6 appendix figuresNanophononics has the potential for information tra...