The effect of degenerate level n-type doping on the bulk acoustic wave propagation properties in single crystal silicon is studied. Keyes' theory [1] is used to calculate the electronic effect of free electrons on the elastic constants c ij as function of temperature. Slowness curves are calculated for the bulk acoustic wave modes via solution of the Christoffel equation at several doping levels. Variation with respect to temperature is performed in order to extract the linear temperature coefficient of slowness as function of propagation direction. It is found that n-type doping has the largest effect on the slow shear mode and that temperature stable wave propagation directions exist with doping levels above 10 19 cm -3 . Comparison to ex...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
In this paper analysis of wave propagation of elastic wave in scandium antimonide semiconductor was ...
Monocrystalline silicon wafers are widely used in the photovoltaic industry for solar panels with hi...
The effect of degenerate level n-type doping on the bulk acoustic wave propagation properties in sin...
Elastic constants c11, c12, and c44 of degenerately doped silicon are studied experimentally as a fu...
Abstract—Elastic constants c11, c12 and c44 of degenerately doped silicon are studied experimentally...
We model the temperature coefficients of resonance modes of degenerately n-type doped silicon resona...
We study experimentally the temperature dependence of the elastic constants of degenerately doped si...
Passive temperature compensation of silicon MEMS resonators based on heavy n- and p-type doping is s...
The first- and second-order temperature coefficients and the total temperature-induced frequency dev...
The effect of temperature gradient on ultrasonic attenuation is estimated based upon the simple phe-...
Attenuation and velocity changes of ultrasonic waves of frequencies up to 2.14 GHz have been measure...
Knowing propagating properties of an ultrasonic wave can enhance the non-destructive testing techniq...
Silicon in its different structural forms is the most widely element in all modern microtechnologic...
International audienceBulk acoustic wave resonators have already been tested at cryogenic temperatur...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
In this paper analysis of wave propagation of elastic wave in scandium antimonide semiconductor was ...
Monocrystalline silicon wafers are widely used in the photovoltaic industry for solar panels with hi...
The effect of degenerate level n-type doping on the bulk acoustic wave propagation properties in sin...
Elastic constants c11, c12, and c44 of degenerately doped silicon are studied experimentally as a fu...
Abstract—Elastic constants c11, c12 and c44 of degenerately doped silicon are studied experimentally...
We model the temperature coefficients of resonance modes of degenerately n-type doped silicon resona...
We study experimentally the temperature dependence of the elastic constants of degenerately doped si...
Passive temperature compensation of silicon MEMS resonators based on heavy n- and p-type doping is s...
The first- and second-order temperature coefficients and the total temperature-induced frequency dev...
The effect of temperature gradient on ultrasonic attenuation is estimated based upon the simple phe-...
Attenuation and velocity changes of ultrasonic waves of frequencies up to 2.14 GHz have been measure...
Knowing propagating properties of an ultrasonic wave can enhance the non-destructive testing techniq...
Silicon in its different structural forms is the most widely element in all modern microtechnologic...
International audienceBulk acoustic wave resonators have already been tested at cryogenic temperatur...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
In this paper analysis of wave propagation of elastic wave in scandium antimonide semiconductor was ...
Monocrystalline silicon wafers are widely used in the photovoltaic industry for solar panels with hi...