We study the variation of the frequency splitting coefficients describing the solar asphericity in both GONG and MDI data, and use these data to investigate temporal sound-speed variations as a function of both depth and latitude during the period from 1995-2000 and a little beyond. The temporal variations in even splitting coefficients are found to be correlated to the corresponding component of magnetic flux at the solar surface. We confirm that the sound-speed variations associated with the surface magnetic field are superficial. Temporally averaged results show a significant excess in sound speed around 0.92 solar radii and latitude of 60 degrees
The latitudinal sound-speed structure of the Sun's convection zone gives insight into the physical ...
Magnetic field in the solar interior contributes to the even order splitting coefficients, but it is...
Data obtained by the GONG and MDI instruments over the last seven years are used to study how solar ...
We study the variation of the frequency splitting coefficients describing the solar asphericity in b...
We study the variation of the frequency splitting coefficients describing the solar asphericity in b...
We have analyzed changes in the acoustic oscillation eigenfrequencies measured over the past 7 years...
We present results on the structure of the near-surface layers of the Sun obtained by inverting freq...
We present results on the structure of the near-surface layers of the Sun obtained by inverting freq...
The temporal variations of the rotation rate in the solar interior are studied using frequency split...
We discuss here two sets of helioseismology data acquired at Big Bear Solar Observatory during the s...
Using even-order frequency splitting coefficients of global p-modes it is possible to infer the magn...
The observed splittings of solar oscillation frequencies can be employed to separate the effects of ...
Below the acoustic cut-off frequency, oscillations are trapped within the solar interior and become ...
Frequency splitting coefficients from Global Oscillation Network Group (GONG) and Michelson Doppler ...
The observed splittings of solar oscillation frequencies can be employed to separate the effects of ...
The latitudinal sound-speed structure of the Sun's convection zone gives insight into the physical ...
Magnetic field in the solar interior contributes to the even order splitting coefficients, but it is...
Data obtained by the GONG and MDI instruments over the last seven years are used to study how solar ...
We study the variation of the frequency splitting coefficients describing the solar asphericity in b...
We study the variation of the frequency splitting coefficients describing the solar asphericity in b...
We have analyzed changes in the acoustic oscillation eigenfrequencies measured over the past 7 years...
We present results on the structure of the near-surface layers of the Sun obtained by inverting freq...
We present results on the structure of the near-surface layers of the Sun obtained by inverting freq...
The temporal variations of the rotation rate in the solar interior are studied using frequency split...
We discuss here two sets of helioseismology data acquired at Big Bear Solar Observatory during the s...
Using even-order frequency splitting coefficients of global p-modes it is possible to infer the magn...
The observed splittings of solar oscillation frequencies can be employed to separate the effects of ...
Below the acoustic cut-off frequency, oscillations are trapped within the solar interior and become ...
Frequency splitting coefficients from Global Oscillation Network Group (GONG) and Michelson Doppler ...
The observed splittings of solar oscillation frequencies can be employed to separate the effects of ...
The latitudinal sound-speed structure of the Sun's convection zone gives insight into the physical ...
Magnetic field in the solar interior contributes to the even order splitting coefficients, but it is...
Data obtained by the GONG and MDI instruments over the last seven years are used to study how solar ...