修改一部分格式问题
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@@ -25,6 +25,8 @@
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\usepackage{makecell}
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\usepackage{amsmath}
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\usepackage{tabularx}
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\usepackage{booktabs}
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\usepackage{tabularray}
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\begin{document}
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@@ -266,15 +268,15 @@ Thus, we divide the phonons of defect-free 4H-SiC into three categories:
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}
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{
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\newcommand{\tworow}[1]{\multirow{2}{*}{#1}}
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\newcommand{\twocol}[1]{\multicolumn{2}{C{1cm}|}{#1}}
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\newcommand{\threecol}[1]{\multicolumn{3}{C{1.5cm}|}{#1}}
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\newcommand{\fourcol}[1]{\multicolumn{3}{C{2cm}|}{#1}}
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\newcommand{\twocol}[2]{\multicolumn{2}{C{#1}|}{#2}}
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\newcommand{\threecol}[2]{\multicolumn{3}{C{#1}|}{#2}}
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\newcommand{\fourcol}[1]{\multicolumn{4}{C{2cm}|}{#1}}
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\setlength\tabcolsep{0pt} % 不加这句话的话,表格的竖线的宽度会被计入,导致合并后的单元格不居中
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\caption{Strong-polarized phonons near $\Gamma$ point}
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\begin{tabular}{
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| C{4cm} % header
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| C{0.5cm} | C{0.5cm} % z E1
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| C{0.5cm} | C{0.5cm} | C{0.5cm} % z A1
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| C{1cm} | C{1cm} % z E1
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| C{0.7cm} | C{0.7cm} | C{1cm} % z A1
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| C{0.5cm} | C{0.5cm} | C{0.5cm} % y z
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| C{1cm} % y x
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| C{1cm} % y y
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@@ -284,24 +286,24 @@ Thus, we divide the phonons of defect-free 4H-SiC into three categories:
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| }
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\hline
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\textbf{Direction of Incident \& Scattered Light}
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& \multicolumn{5}{C{2.5cm}|}{z}
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& \multicolumn{5}{C{3.5cm}|}{y}
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& \multicolumn{5}{C{4cm}|}{z}
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& \multicolumn{5}{C{3.9cm}|}{y}
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& \multicolumn{9}{C{5cm}|}{between z and y, 10\textdegree{} to z}
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\\ \hline
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\textbf{Number of Phonon}
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& 1 & 2 % z E1
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& \threecol{3} % z A1
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& \threecol{1} % y z
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& 2 % y x
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& 3 % y y
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& \fourcol{1} % 45 y&z mainly z
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& 2 % 45 x
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& \fourcol{3} % 45 y&z mainly y
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& 1 & 2 % z E1
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& \threecol{2.4cm}{3} % z A1
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& \threecol{1.5cm}{1} % y z
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& 2 % y x
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& 3 % y y
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& \fourcol{1} % 45 y&z mainly z
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& 2 % 45 x
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& \fourcol{3} % 45 y&z mainly y
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\\ \hline
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\textbf{Vibration Direction}
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& x (TO) & y (TO) % z E1
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& \threecol{z (LO)} % z A1
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& \threecol{z (TO)} % y z
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& \threecol{2.4cm}{z (LO)} % z A1
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& \threecol{1.5cm}{z (TO)} % y z
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& x (TO) % y x
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& y (LO) % y y
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& \fourcol{y-z mixed (LO-TO mixed)} % 45 y&z mainly z
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@@ -309,14 +311,14 @@ Thus, we divide the phonons of defect-free 4H-SiC into three categories:
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& \fourcol{y-z mixed (LO-TO mixed)} % 45 y&z mainly y
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\\ \hline
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\textbf{Representation in Group $\mathrm{C_{6v}}$}
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& \twocol{$\mathrm{E_1}$}
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& \threecol{$\mathrm{A_1}$}
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& \twocol{2cm}{$\mathrm{E_1}$}
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& \threecol{2.4cm}{$\mathrm{A_1}$}
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& \multicolumn{14}{C{8.5cm}|}{Not applicable}
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\\ \hline
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\textbf{Representation in Group $\mathrm{C_{2v}}$}
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& $\mathrm{B_2}$ & $\mathrm{B_1}$ % z E1
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& \threecol{$\mathrm{A_1}$} % z A1
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& \threecol{$\mathrm{A_1}$} % y z
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& \threecol{2.4cm}{$\mathrm{A_1}$} % z A1
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& \threecol{1.5cm}{$\mathrm{A_1}$} % y z
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& $\mathrm{B_2}$ % y x
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& $\mathrm{B_1}$ % y y
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& \fourcol{Not Applicable} % 45 y&z mainly z
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@@ -334,18 +336,18 @@ Thus, we divide the phonons of defect-free 4H-SiC into three categories:
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& xx & yy & yz & zz % 45 y&z mainly y
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\\ \hline
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\textbf{Raman Intensity (a.u.)}
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& \twocol{$53.52$} % z E1
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& \twocol{$53.52$} & $464.69$ % z A1
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& \twocol{$56.86$} & $454.09$ % y z
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& $53.52$ % y x
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& $53.55$ % y y
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& \twocol{$53.71$} & $3.20$ & $425.98$ % 45 y&z mainly z
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& $53.56$ % 45 x
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& \twocol{$3.60$} & $50.36$ & $27.99$ % 45 y&z mainly y
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& \twocol{2cm}{$53.52$} % z E1
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& \twocol{1.4cm}{$53.52$} & $464.69$ % z A1
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& \twocol{1cm}{$56.86$} & $454.09$ % y z
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& $53.52$ % y x
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& $53.55$ % y y
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& \twocol{1cm}{$53.71$} & $3.20$ & $425.98$ % 45 y&z mainly z
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& $53.56$ % 45 x
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& \twocol{1cm}{$3.60$} & $50.36$ & $27.99$ % 45 y&z mainly y
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\\ \hline
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\textbf{Visible in Common Raman Experiment}
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& \twocol{Yes} % z E1
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& \twocol{Yes (LOPC)} & No % z A1
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& \twocol{2cm}{Yes} % z E1
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& \twocol{1.4cm}{Yes (LOPC)} & No % z A1
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& Yes (overfocused) & No & Yes (overfocused) % y z
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& Yes % y x
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& Yes (LOPC) % y y
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@@ -354,16 +356,16 @@ Thus, we divide the phonons of defect-free 4H-SiC into three categories:
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& \fourcol{???} % 45 y&z mainly y
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\\ \hline
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\textbf{Wavenumber (Simulation) ($\mathrm{cm^{-1}}$)}
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& \twocol{$776.57$} % z E1
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& \threecol{$933.80$} % z A1
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& \threecol{$761.80$} % y z
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& $776.57$ % y x
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& $941.33$ % y y
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& \fourcol{$762.76$} % 45 y&z mainly z
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& $776.57$ % 45 x
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& \fourcol{$940.86$} % 45 y&z mainly y
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& \twocol{2cm}{$776.57$} % z E1
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& \threecol{2.4cm}{$933.80$} % z A1
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& \threecol{1.5cm}{$761.80$} % y z
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& $776.57$ % y x
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& $941.33$ % y y
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& \fourcol{$762.76$} % 45 y&z mainly z
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& $776.57$ % 45 x
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& \fourcol{$940.86$} % 45 y&z mainly y
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\\ \hline
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\textbf{Electrical Polarity} & \multicolumn{19}{C{11cm}|}{Strong}
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\textbf{Electrical Polarity} & \multicolumn{19}{C{12.9cm}|}{Strong}
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\\ \hline
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\end{tabular}
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}
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