def cavity_resonances(date): """Use a cauchy fit to get the MW Resonance from an atom signal. In this case, with the dye laser at 100 GHz, looking at MW Ionization""" folder = os.path.join("..", date) norm = False fname = "52_fscan.txt" d = -1 norm = False fig, ax = plt.subplots() fname = os.path.join(folder, fname) data, popt = tk.mw_fscan(fname, d, ax, norm=norm) fig.tight_layout() return
def cavity_resonances(date): """Using the dye laser at -180 GHz, the MW f is scanned over the cavity resonances, finding center, FWHM, and Q values.""" fig, axes = plt.subplots(nrows=1, sharex=True) folder = os.path.join("..", date) instrs = [["1_fscan.txt", axes]] for instr in instrs: [fname, ax] = instr print("\n", fname) fname = os.path.join(folder, fname) data, popt = tk.mw_fscan(fname, -1, ax) fig.tight_layout() return
def cavity_resonances(date): import os import matplotlib.pyplot as plt import toolkit as tk folder = os.path.join("..", date) norm = False fname = "2_fscan.txt" d = -1 norm = False fig, ax = plt.subplots() fname = os.path.join(folder, fname) data, popt = tk.mw_fscan(fname, d, ax, norm=norm) fig.tight_layout() return
def cavity_resonances(date): import os import matplotlib.pyplot as plt import toolkit as tk """Using the dye laser at -180 GHz, the MW f is scanned over the cavity resonances, finding center, FWHM, and Q values.""" fig, axes = plt.subplots(nrows=1, sharex=True) folder = os.path.join("..", date) norm = False instrs = [["1_fscan.txt", axes]] for instr in instrs: [fname, ax] = instr print("\n", fname) fname = os.path.join(folder, fname) data, popt = tk.mw_fscan(fname, 1, ax, norm=norm) fig.tight_layout() return
def cavity_resonances(date): import os import matplotlib.pyplot as plt import toolkit as tk folder = os.path.join("..", date) norm = False instrs = [["1_fscan.txt"], ["3_fscan.txt"]] fig, axes = plt.subplots(nrows=len(instrs)) for iax, instr in enumerate(instrs): [fname] = instr if len(instrs) > 1: ax = axes[iax] else: ax = axes print("\n", fname) fname = os.path.join(folder, fname) data, popt = tk.mw_fscan(fname, 1, ax, norm=norm) fig.tight_layout() return
def cavity_resonances(date): import os import matplotlib.pyplot as plt import toolkit as tk """Using the dye laser at -180 GHz, the MW f is scanned over the cavity resonances, finding center, FWHM, and Q values.""" folder = os.path.join("..", date) norm = False instrs = [ ["1_fscan.txt"], ] fig, axes = plt.subplots(nrows=len(instrs)) for iax, instr in enumerate(instrs): [fname] = instr if len(instrs) > 1: ax = axes[iax] else: ax = axes print("\n", fname) fname = os.path.join(folder, fname) data, popt = tk.mw_fscan(fname, 1, ax, norm=norm) fig.tight_layout() return