added BSE metadata

parent 84e6da51
...@@ -1581,6 +1581,118 @@ ...@@ -1581,6 +1581,118 @@
"section_single_configuration_calculation" "section_single_configuration_calculation"
], ],
"units": "J" "units": "J"
}, {
"description": "Energies of the dielectric function epsilon",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_epsilon_energies",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
],
"units": "J"
}, {
"description": "Real part of the dielectric function epsilon",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_epsilon_re",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Imaginary part of the dielectric function epsilon",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_epsilon_im",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Energies of the conductivity function sigma",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_sigma_energies",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
],
"units": "J"
}, {
"description": "Real part of the conductivity function sigma",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_sigma_re",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Energies of the loss function",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_loss_energies",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
],
"units": "J"
}, {
"description": "Loss function",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_loss",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Imaginary part of the conductivity function sigma",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_sigma_im",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Exciton oscillator strength",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_exciton_oscillator_strength",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Real part of the transition amplitude",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_exciton_amplitude_re",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Imaginary part of the transition amplitude",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_exciton_amplitude_im",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
]
}, {
"description": "Exciton binding energies",
"dtypeStr": "f",
"name": "x_exciting_xs_bse_exciton_binding_energies",
"repeats": false,
"shape": ["x_exciting_xs_bse_number_of_components","x_exciting_xs_bse_number_of_excitons"],
"superNames": [
"section_single_configuration_calculation"
],
"units": "J"
}, { }, {
"description": "Number of independent components in the dielectric tensor", "description": "Number of independent components in the dielectric tensor",
"dtypeStr": "i", "dtypeStr": "i",
......
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