##############SYSTEM PARAMETERS ############ ndim mass hbaromega temp nslices 1 1. 1.0 0.05 60 ############# SIMULATION PARAMETERS ############### nblock nstep nstart nmovers nanal 1000 5000 0 16 5 nalg nspill hop gammadsp 0 100000 2.0 0.3 hop_hmc nstdyn 15. 200 iwig whstep nwstep iwave sigmap covarp 0 0.01 100 2 1. 0. ############ POST ANALYSIS ##################### level 1 legenda: mass = mass of the particle omega = phonon frequency (hbaromega) temp = temperature/hbaromega nslices = number of time slices nblock = number of blocks for statistics nstep = number of steps per block nstart = flag to decide the way to start the code inquires the existence of a file qid.rs, if it exists the positions of time slices are read from that file, otherwise they are generated randomly around the origin. 0 : start from scratch (as explained above) 1 : continue a previous run, read positions and cumulators in qid.rs -1 : reanalize a previously saved set of configurations (qid.pc) nmovers = numbers of time slices moved in a single MC attempt. nanal = calling frequency of analisys in step units nalg = choose the MC algorithm to be used 0 : driver OMOVE attempt to generate one slice between the adjacent fixed slices (max nmovers=nslices/2) 1 : driver LEVY bisectes a nmovers imaginary time interval by free propagator 2 : driver LEVYID construct the whole path by free propagator; it is not a Metropolis MC hop = maximum displacement for the DISPLACE move gammadsp = frequency of attempting the DISPLACE moves nspill = frequency in steps of dumping confs. in file qid.pc level = new level for post analysis