misc
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1
.gitignore
vendored
1
.gitignore
vendored
@@ -3,6 +3,7 @@
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**/*.npy
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plots*
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/make_*.py
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Archive
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*.mp4
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*.png
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@@ -1,5 +1,5 @@
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from . import math
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from .math import abs2, argclosest, span
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from .math import abs2, argclosest, span, normalized
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from .physics import fiber, materials, pulse, simulate, units
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from .physics.simulate import RK4IP, parallel_RK4IP, run_simulation
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from .plotting import (
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@@ -76,6 +76,11 @@ def abs2(z: np.ndarray) -> np.ndarray:
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return z.real ** 2 + z.imag ** 2
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def normalized(z: np.ndarray) -> np.ndarray:
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ab = abs2(z)
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return ab / ab.max()
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def sigmoid(x):
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return 1 / (np.exp(-x) + 1)
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@@ -1146,3 +1146,7 @@ def remove_2nd_order_dispersion2(
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opti = minimize_scalar(score, bounds=(-max_gdd * 1e30, max_gdd * 1e30))
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opti["x"] *= 1e-30
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return propagate(opti.x * 1e30), opti
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def gdd(w: np.ndarray, gdd: float) -> np.ndarray:
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return np.exp(0.5j * w ** 2 * gdd)
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@@ -1042,12 +1042,20 @@ def measure_and_annotate_fwhm(
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field = abs2(field)
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_, (left, right), *_ = pulse.find_lobe_limits(unit.inv(t), field)
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arrow_label = f"{right - left:.1f} {unit.name}"
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annotate_fwhm(ax, left, right, arrow_label, field.max(), side, arrow_length_pts, arrow_props)
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return right - left
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def annotate_fwhm(
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ax, left, right, arrow_label, v_max=1, side="right", arrow_length_pts=20.0, arrow_props=None
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):
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arrow_dict = dict(arrowstyle="->")
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if arrow_props is not None:
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arrow_dict |= arrow_props
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ax.annotate(
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"" if side == "right" else arrow_label,
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(left, field.max() / 2),
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(left, v_max / 2),
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xytext=(-arrow_length_pts, 0),
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ha="right",
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va="center",
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@@ -1056,13 +1064,12 @@ def measure_and_annotate_fwhm(
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)
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ax.annotate(
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"" if side == "left" else arrow_label,
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(right, field.max() / 2),
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(right, v_max / 2),
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xytext=(arrow_length_pts, 0),
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textcoords="offset points",
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arrowprops=arrow_dict,
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va="center",
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)
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return right - left
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def partial_plot(root: os.PathLike):
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