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GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar > Member List

This is the complete list of members for GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >, including all inherited members.

calc_Green(const int &tindex, const complex< double > &phase, const vector< Mps< Symmetry, complex< double > > > &OxPhi, const Mps< Symmetry, complex< double > > &Psi)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
calc_Green_thermal(const int &tindex, const vector< Mpo< Symmetry, MpoScalar > > &Ox, const Mps< Symmetry, complex< double > > &Phi, const Mps< Symmetry, complex< double > > &Psi)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
calc_GreenCell(const int &tindex, const complex< double > &phase, const vector< Mps< Symmetry, complex< double > > > &OxPhi, const vector< Mps< Symmetry, complex< double > > > &Psi, int x0=0)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
calc_GreenCell(const int &tindex, const complex< double > &phase, const std::array< vector< Mps< Symmetry, complex< double > > >, 2 > &Psi)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
calc_GreenCell_thermal(const int &tindex, const vector< Mpo< Symmetry, MpoScalar > > &Ox, const vector< Mps< Symmetry, complex< double > > > &Psi)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
calc_intweights()GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
CHOSEN_VERBOSITYGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
compute_cell(const Hamiltonian &H, const vector< Mps< Symmetry, complex< double > > > &OxPhiBra, const vector< Mps< Symmetry, complex< double > > > &OxPhiKet, double Eg, bool TIME_FORWARDS=true, bool COUNTERPROPAGATE=true, int x0=0)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
compute_one(int j0, const Hamiltonian &H, const vector< Mps< Symmetry, complex< double > > > &OxPhi, double Eg, bool TIME_FORWARDS=true)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
compute_thermal_cell(const Hamiltonian &H, const vector< Mpo< Symmetry, MpoScalar > > &Odag, const Mps< Symmetry, complex< double > > &Phi, vector< Mps< Symmetry, complex< double > > > &OxPhi0, bool TIME_FORWARDS)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
counterpropagate_cell(const Hamiltonian &H, const vector< Mps< Symmetry, complex< double > > > &OxPhiBra, const vector< Mps< Symmetry, complex< double > > > &OxPhiKet, double Eg, bool TIME_FORWARDS=true)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
dcellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
dcellFTGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
dLphysGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
FT_tw(const MatrixXcd &Gtq, MatrixXcd &Gwq, VectorXcd &G0q, VectorXcd &Glocw)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
FTcell_tw()GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
FTcell_xq(bool TRANSPOSE=false)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
FTcellww_xq(bool TRANSPOSE=false)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
FTcellxx_tw()GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
FTloc_tw(const VectorXcd &Gloct, const ArrayXd &wvals)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
FTxx_tw(const MatrixXcd &Gtx, MatrixXcd &Gwx, VectorXcd &G0x, VectorXcd &Glocw)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
G0qGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
G0qCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
G0qQmultiGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
G0xGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
G0xCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
get_GlocwCell() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
get_Gtx() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
get_GtxCell() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
get_GwqCell() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
GloctGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GloctCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GloctQmultiGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GlocwGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GlocwCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GlocwQmultiGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GREENINT_CHOICEGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GreenPropagator()GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
GreenPropagator(string label_input, double tmax_input, int Nt_input, int Ns_input=1, double wmin_input=-10., double wmax_input=10., int Nw_input=501, Q_RANGE Q_RANGE_CHOICE_input=MPI_PPI, int Nq_input=501, GREEN_INTEGRATION GREENINT=OOURA)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
GreenPropagator(string label_input, int Lcell_input, double tmax_input, const MatrixXcd &Gtx_input, GREEN_INTEGRATION GREENINT=OOURA)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
GreenPropagator(string label_input, int Lcell_input, int Ncells_input, int Ns_input, double tmax_input, const vector< vector< MatrixXcd > > &Gtx_input, Q_RANGE Q_RANGE_CHOICE_input=MPI_PPI, int Nq_input=501, GREEN_INTEGRATION GREENINT=OOURA)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
GreenPropagator(string label_input, int Lcell_input, int Ncells_input, int Ns_input, double tmax_input, const vector< string > &files, Q_RANGE Q_RANGE_CHOICE_input=MPI_PPI, int Nq_input=501, GREEN_INTEGRATION GREENINT=OOURA)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
GtqGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GtqCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GtqQmultiGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GtxGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GtxCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GtxQmultiGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GwqGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GwqCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GwqQmultiGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GwxGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
GwxCellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
h_oouraGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
icellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
integrate_Glocw_cell(double mu, int Nint=1000)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
INTinfo() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
j0GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
labelGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
LcellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
LheteroGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
lim_NsvGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
logGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
logfolderGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
make_xarrays(int Lhetero_input, int Lcell_input, int Ncells_input, int Ns=1, bool PRINT=false)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
MeasureGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
measure_intervalGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
measure_nameGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
measure_subfolderGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
measure_wavepacket(const Mps< Symmetry, complex< double > > &Psi, double tval, int i=0)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
MeasurementGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
muGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
ncellGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
NcellsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
NqGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
NQGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
NsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
NtGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
NwGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
OshiftGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
OxPhiFullGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
print_starttext() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
propagate_cell(int x0, const Hamiltonian &H, const vector< Mps< Symmetry, complex< double > > > &OxPhi, double Eg, bool TIME_FORWARDS=true)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
propagate_one(int j0, const Hamiltonian &H, const vector< Mps< Symmetry, complex< double > > > &OxPhi, double Eg, bool TIME_FORWARDS=true)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
propagate_thermal_cell(const Hamiltonian &H, const vector< Mpo< Symmetry, MpoScalar > > &Ox, Mps< Symmetry, complex< double > > Phi, vector< Mps< Symmetry, complex< double > > > &OxPhi0, bool TIME_FORWARDS)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
Q_RANGE_CHOICEGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
qinfo() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
qmaxGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
qminGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
recalc_FTw(double wmin_new, double wmax_new, int Nw_new=501)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
recalc_FTwCell(double wmin_new, double wmax_new, int Nw_new=501, bool TRANSPOSE=false)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
save(bool IGNORE_TX=false) constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
save_GtqCell() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
SAVE_LOGGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
save_log(int i, int tindex, double tval, const Mps< Symmetry, complex< double > > &Psi, const TDVPPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar, Mps< Symmetry, complex< double > > > &TDVP, const EntropyObserver< Mps< Symmetry, complex< double > > > &Sobs, const vector< bool > &TWO_SITE)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
set_dLphys(int x)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_h_ooura(double x)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_Lcell(int Lcell_input)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_lim_Nsv(size_t x)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_log(string logfolder_input="./")GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_measurement(const vector< Mpo< Symmetry, MpoScalar > > &Measure_input, int Lcell, int measure_interval_input=10, string measure_name_input="M", string measure_subfolder_input=".")GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_Oshift(vector< MpoScalar > Oshift_input)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_OxPhiFull(const vector< Mps< Symmetry, complex< double > > > &OxPhiFull_input)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_qlims(Q_RANGE CHOICE)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
set_Qmulti(int NQ_input)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_tol_compr(double x)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_tol_DeltaS(double x)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
set_verbosity(DMRG::VERBOSITY::OPTION VERBOSITY)GreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >inline
TIME_FORWARDSGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
tinfo() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
tmaxGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
tol_comprGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
tol_DeltaSGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
tol_LanczosGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
tstepsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
tvalsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
USE_QAWOGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
weightsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
winfo() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
wmaxGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
wminGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
xindsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private
xinfo() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
xt_info() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
xtINTqw_info() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
xtq_info() constGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >
xvalsGreenPropagator< Hamiltonian, Symmetry, MpoScalar, TimeScalar >private