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from ...basic import __cell_arg__ as __cell_arg__
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from ...routing import Route as Route
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from ...structures import Clothoid as Clothoid, circle as circle, hole as hole
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from _typeshed import Incomplete
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class Nano_ant:
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w_wg: Incomplete
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xs_wg: Incomplete
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etch_type: str
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vector: Incomplete
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teeth_number: Incomplete
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pitch: Incomplete
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duty_cycle: Incomplete
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taper_length: Incomplete
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ant_length: Incomplete
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width: Incomplete
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max_theta: Incomplete
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define_type: Incomplete
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etch_depth: Incomplete
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show_pins: Incomplete
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cell: Incomplete
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def __init__(self, w_wg: float = 0.41, xs_wg: str = 'strip', define_type: str = 'non-periodic', vector: float | list = [0.5, 0.5, 0.5, 0.5, 0.5, 0.5], taper_length: float = 3, width: float = 6, max_theta: float = 110, pitch: float | list = 0.6, duty_cycle: float | list = 0.3, teeth_number: float = 6, etch_depth: str | list = ['METCH'], show_pins: bool = True) -> None: ...
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def generate_gds(self, sample_step: float = 0.1, cell_name: str = 'Nanoantenna'): ...
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def generate_gds_positive(self, sample_step: float = 0.1): ...
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def generate_gds_error(self) -> None: ...
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class Taper:
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width1: Incomplete
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width2: Incomplete
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length: Incomplete
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type: Incomplete
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order: int
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show_pins: Incomplete
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cell: Incomplete
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def __init__(self, width1: int = 4, width2: float = 0.45, length: int = 30, type: str = 'linear', show_pins: bool = False) -> None: ...
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def generate_gds(self): ...
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class Grating_2D_Hole:
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w_wg: Incomplete
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w_gt: Incomplete
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l_taper: Incomplete
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type_taper: Incomplete
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gt_vector: Incomplete
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gt_num: Incomplete
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gt_diameter: Incomplete
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gt_layer: Incomplete
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polysi_vector: Incomplete
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polysi_num: Incomplete
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polysi_diameter: Incomplete
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polysi_layer: Incomplete
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reflector_vector: Incomplete
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l_field_center: Incomplete
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cell: Incomplete
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def __init__(self, w_wg: float = 0.5, w_gt: int = 5, l_taper: int = 30, type_taper: str = 'parabolic', gt_vector=[0.5, 0.5, 0.5, 0.5, 0.5], gt_diameter: float = 0.4, gt_layer: str = 'STRIP_COR', polysi_vector=[0.5, 0.5, 0.5, 0.5, 0.5], polysi_diameter: float = 0.4, polysi_layer: str = 'FCW_TRE', reflector_vector=[0.3, 0.3, 0.3, 0.3, 0.3, 0.3], l_field_center: int = 1) -> None: ...
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reflector_num: Incomplete
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def generate_gds(self): ...
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class GC_STD_2D:
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name: Incomplete
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instantiate: bool
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num_x: Incomplete
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num_y: Incomplete
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Lx_taper: Incomplete
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Ly_taper: Incomplete
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Lx_end: Incomplete
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Ly_end: Incomplete
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Lx_side: Incomplete
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Ly_side: Incomplete
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Lx_port: Incomplete
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Ly_port: Incomplete
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xs_open: Incomplete
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w_wg: Incomplete
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xs_wg: Incomplete
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etch_type: Incomplete
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shape: Incomplete
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hole_shape: Incomplete
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Dx_hole: Incomplete
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Dy_hole: Incomplete
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Px: Incomplete
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Py: Incomplete
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P_AR: Incomplete
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L_AR: Incomplete
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show_pins: Incomplete
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positive: bool
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layer_etch: Incomplete
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cell: Incomplete
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def __init__(self, name=None, etch_type: str = 'FETCH', xs_wg: str = 'grating', Dx_hole: float = 0.3, Dy_hole: float = 0.3, hole_shape: str = 'circle', shape: str = 'circle', xs_open: str = None, Px: float = 0.57, Py: float = 0.57, num_x: float = 25, num_y: float = 25, Lx_taper: float = 50.0, Ly_taper: float = 0.0, Lx_end: float = 1.0, Ly_end: float = 1.0, Lx_side: float = 0.5, Ly_side: float = 0.5, Lx_port: float = 5.0, Ly_port: float = 5.0, w_wg: float = 0.5, show_pins: bool = False, P_AR: float = 0.6, L_AR: float = 1) -> None: ...
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def generate_negative(self): ...
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def generate_positive(self): ...
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def generate_test_gds(self, dX_gc2gc: int = 300): ...
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class GC_STD_1D:
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name: Incomplete
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instantiate: bool
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xs_open: Incomplete
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xs_wg: Incomplete
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w_wg: Incomplete
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L_taper: Incomplete
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L_end: Incomplete
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A_taper: Incomplete
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show_pins: Incomplete
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L_tail: Incomplete
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positive: bool
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Period: Incomplete
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eta_etch: Incomplete
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num: Incomplete
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sector_gc: Incomplete
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L_AR: Incomplete
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P_AR: Incomplete
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layer_etch: Incomplete
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cell: Incomplete
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def __init__(self, name=None, xs_wg: str = 'strip', w_wg: float = 0.5, etch_type: str = 'FETCH', xs_open: str = None, L_taper: float = 10.0, L_end: float = 2.0, A_taper: float = 30.0, Period: float = 0.5, eta_etch: float = 0.5, num: int = 20, sector_gc: bool = True, show_pins: bool = False, L_tail: int = 2, P_AR: float = 1.0, L_AR: float = 2.0) -> None: ...
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def generate_negative(self): ...
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def generate_positive(self): ...
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def generate_test_dev(self, dX_gc2gc): ...
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class FA:
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pitch: Incomplete
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number: Incomplete
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cell: Incomplete
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def __init__(self, fiber_coupler, pitch, number, show_pins: bool = False) -> None: ...
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