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$a$ =

$c$ =

$\leq a \leq$

$\leq c \leq$

id =





Chosen Fixed Point

Here is the data for the chosen fixed point.
$F_{UV}$ represents the flavor symmetries in the UV Lagrangian, and $F_{IR}$ represents the flavor symmetries in the IR. $F_{UV}$ and $F_{IR}$ can differ due to accidental symmetry enhancement.
The number of marginal operators, $n_{marginal}$, minus the dimension of flavor symmetries in IR, $|F_{IR}|$, corresponds to the coefficient of $t^6$ in the superconformal index.

#TheorySuperpotentialCentral charge $a$Central charge $c$Ratio $a/c$Matter field: $R$-chargeU(1) part of $F_{UV}$Rank of $F_{UV}$Rational
607 SU2adj1nf2 ${}M_{1}q_{1}q_{2}$ + ${ }M_{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{3}q_{1}\tilde{q}_{1}$ + ${ }M_{4}q_{2}\tilde{q}_{2}$ + ${ }M_{5}q_{2}\tilde{q}_{1}$ + ${ }M_{5}\phi_{1}^{2}$ + ${ }M_{6}q_{1}\tilde{q}_{2}$ 0.7284 0.9028 0.8068 [M:[0.9169, 0.9169, 0.9169, 0.9169, 1.0831, 0.7506], q:[0.6247, 0.4584], qb:[0.4584, 0.6247], phi:[0.4584]] [M:[[4, 6, 1], [0, -2, -1], [6, 4, 1], [-2, 0, -1], [-2, -2, 0], [6, 6, 0]], q:[[-6, -6, -1], [2, 0, 0]], qb:[[0, 2, 0], [0, 0, 1]], phi:[[1, 1, 0]]] 3
Relevant OperatorsMarginal Operators$n_{marginal}$$-$$|F_{IR}|$Superconformal IndexRefined index
${}M_{6}$, ${ }\phi_{1}^{2}$, ${ }M_{4}$, ${ }M_{2}$, ${ }M_{3}$, ${ }M_{1}$, ${ }M_{5}$, ${ }\phi_{1}q_{2}^{2}$, ${ }\phi_{1}q_{2}\tilde{q}_{1}$, ${ }\phi_{1}\tilde{q}_{1}^{2}$, ${ }M_{6}^{2}$, ${ }\phi_{1}q_{1}q_{2}$, ${ }\phi_{1}q_{1}\tilde{q}_{1}$, ${ }\phi_{1}q_{2}\tilde{q}_{2}$, ${ }\phi_{1}\tilde{q}_{1}\tilde{q}_{2}$, ${ }M_{6}\phi_{1}^{2}$, ${ }M_{2}M_{6}$, ${ }M_{4}M_{6}$, ${ }M_{3}M_{6}$, ${ }M_{1}M_{6}$, ${ }\phi_{1}q_{1}\tilde{q}_{2}$, ${ }\phi_{1}q_{1}^{2}$, ${ }\phi_{1}\tilde{q}_{2}^{2}$, ${ }M_{2}M_{3}$, ${ }M_{1}M_{2}$, ${ }M_{3}M_{4}$, ${ }M_{5}M_{6}$, ${ }\phi_{1}^{4}$, ${ }M_{1}M_{4}$, ${ }M_{4}^{2}$, ${ }M_{2}^{2}$, ${ }M_{2}M_{4}$, ${ }M_{3}^{2}$, ${ }M_{1}M_{3}$, ${ }M_{1}^{2}$ ${}M_{1}M_{5}$, ${ }M_{2}M_{5}$, ${ }M_{3}M_{5}$, ${ }M_{4}M_{5}$ -3 t^2.252 + 5*t^2.751 + t^3.249 + 3*t^4.126 + t^4.503 + 4*t^4.625 + 5*t^5.002 + 3*t^5.124 + 12*t^5.501 - 3*t^6. + 3*t^6.378 - 4*t^6.499 + t^6.755 + 15*t^6.876 + 5*t^7.254 + 12*t^7.375 + 12*t^7.753 + 4*t^7.874 + 20*t^8.252 - 4*t^8.373 + 3*t^8.629 - 18*t^8.751 - t^4.375/y - t^6.627/y - (4*t^7.126)/y + (4*t^7.625)/y + (5*t^8.002)/y + t^8.124/y + (11*t^8.501)/y - t^8.879/y - t^4.375*y - t^6.627*y - 4*t^7.126*y + 4*t^7.625*y + 5*t^8.002*y + t^8.124*y + 11*t^8.501*y - t^8.879*y g1^6*g2^6*t^2.252 + g1^2*g2^2*t^2.751 + t^2.751/(g1^2*g3) + t^2.751/(g2^2*g3) + g1^6*g2^4*g3*t^2.751 + g1^4*g2^6*g3*t^2.751 + t^3.249/(g1^2*g2^2) + g1^5*g2*t^4.126 + g1^3*g2^3*t^4.126 + g1*g2^5*t^4.126 + g1^12*g2^12*t^4.503 + t^4.625/(g1^3*g2^5*g3) + t^4.625/(g1^5*g2^3*g3) + g1^3*g2*g3*t^4.625 + g1*g2^3*g3*t^4.625 + g1^8*g2^8*t^5.002 + (g1^6*g2^4*t^5.002)/g3 + (g1^4*g2^6*t^5.002)/g3 + g1^12*g2^10*g3*t^5.002 + g1^10*g2^12*g3*t^5.002 + t^5.124/(g1^5*g2^5) + t^5.124/(g1^11*g2^11*g3^2) + g1*g2*g3^2*t^5.124 + g1^6*g2^2*t^5.501 + 4*g1^4*g2^4*t^5.501 + g1^2*g2^6*t^5.501 + t^5.501/(g1^4*g3^2) + t^5.501/(g2^4*g3^2) + t^5.501/(g1^2*g2^2*g3^2) + g1^12*g2^8*g3^2*t^5.501 + g1^10*g2^10*g3^2*t^5.501 + g1^8*g2^12*g3^2*t^5.501 - 3*t^6. - (g1^2*t^6.)/g2^2 - (g2^2*t^6.)/g1^2 - t^6./(g1^6*g2^6*g3^2) + t^6./(g1^2*g2^4*g3) + t^6./(g1^4*g2^2*g3) + g1^4*g2^2*g3*t^6. + g1^2*g2^4*g3*t^6. - g1^6*g2^6*g3^2*t^6. + g1^11*g2^7*t^6.378 + g1^9*g2^9*t^6.378 + g1^7*g2^11*t^6.378 - t^6.499/(g1^6*g2^8*g3) - t^6.499/(g1^8*g2^6*g3) - (g3*t^6.499)/g1^2 - (g3*t^6.499)/g2^2 + g1^18*g2^18*t^6.755 + g1^7*g2^3*t^6.876 + g1^5*g2^5*t^6.876 + g1^3*g2^7*t^6.876 + (g1^5*t^6.876)/(g2*g3) + (2*g1^3*g2*t^6.876)/g3 + (2*g1*g2^3*t^6.876)/g3 + (g2^5*t^6.876)/(g1*g3) + g1^11*g2^5*g3*t^6.876 + 2*g1^9*g2^7*g3*t^6.876 + 2*g1^7*g2^9*g3*t^6.876 + g1^5*g2^11*g3*t^6.876 + g1^14*g2^14*t^7.254 + (g1^12*g2^10*t^7.254)/g3 + (g1^10*g2^12*t^7.254)/g3 + g1^18*g2^16*g3*t^7.254 + g1^16*g2^18*g3*t^7.254 + (g1^3*t^7.375)/g2 + 2*g1*g2*t^7.375 + (g2^3*t^7.375)/g1 + t^7.375/(g1^3*g2^7*g3^2) + (2*t^7.375)/(g1^5*g2^5*g3^2) + t^7.375/(g1^7*g2^3*g3^2) + g1^9*g2^5*g3^2*t^7.375 + 2*g1^7*g2^7*g3^2*t^7.375 + g1^5*g2^9*g3^2*t^7.375 + g1^12*g2^8*t^7.753 + 4*g1^10*g2^10*t^7.753 + g1^8*g2^12*t^7.753 + (g1^6*g2^2*t^7.753)/g3^2 + (g1^4*g2^4*t^7.753)/g3^2 + (g1^2*g2^6*t^7.753)/g3^2 + g1^18*g2^14*g3^2*t^7.753 + g1^16*g2^16*g3^2*t^7.753 + g1^14*g2^18*g3^2*t^7.753 - t^7.874/(g1*g2^5) - (2*t^7.874)/(g1^3*g2^3) - t^7.874/(g1^5*g2) + t^7.874/(g1^11*g2^13*g3^3) + t^7.874/(g1^13*g2^11*g3^3) + t^7.874/(g1^5*g2^7*g3) + t^7.874/(g1^7*g2^5*g3) + (g1*g3*t^7.874)/g2 + (g2*g3*t^7.874)/g1 + g1^7*g2^5*g3^3*t^7.874 + g1^5*g2^7*g3^3*t^7.874 + g1^10*g2^2*t^8.252 - g1^8*g2^4*t^8.252 - 2*g1^6*g2^6*t^8.252 - g1^4*g2^8*t^8.252 + g1^2*g2^10*t^8.252 + t^8.252/(g1^6*g3^3) + t^8.252/(g2^6*g3^3) + t^8.252/(g1^2*g2^4*g3^3) + t^8.252/(g1^4*g2^2*g3^3) - t^8.252/g3^2 + (g1^6*t^8.252)/g3 + (3*g1^4*g2^2*t^8.252)/g3 + (3*g1^2*g2^4*t^8.252)/g3 + (g2^6*t^8.252)/g3 + g1^12*g2^6*g3*t^8.252 + 3*g1^10*g2^8*g3*t^8.252 + 3*g1^8*g2^10*g3*t^8.252 + g1^6*g2^12*g3*t^8.252 - g1^12*g2^12*g3^2*t^8.252 + g1^18*g2^12*g3^3*t^8.252 + g1^16*g2^14*g3^3*t^8.252 + g1^14*g2^16*g3^3*t^8.252 + g1^12*g2^18*g3^3*t^8.252 - t^8.373/(g1^9*g2^11*g3) - t^8.373/(g1^11*g2^9*g3) - (g3*t^8.373)/(g1^3*g2^5) - (g3*t^8.373)/(g1^5*g2^3) + g1^17*g2^13*t^8.629 + g1^15*g2^15*t^8.629 + g1^13*g2^17*t^8.629 - t^8.751/(g1^6*g2^8*g3^3) - t^8.751/(g1^8*g2^6*g3^3) + t^8.751/(g1^2*g2^6*g3^2) + t^8.751/(g1^4*g2^4*g3^2) + t^8.751/(g1^6*g2^2*g3^2) - (5*t^8.751)/(g1^2*g3) - (5*t^8.751)/(g2^2*g3) - 5*g1^6*g2^4*g3*t^8.751 - 5*g1^4*g2^6*g3*t^8.751 + g1^10*g2^6*g3^2*t^8.751 + g1^8*g2^8*g3^2*t^8.751 + g1^6*g2^10*g3^2*t^8.751 - g1^12*g2^10*g3^3*t^8.751 - g1^10*g2^12*g3^3*t^8.751 - (g1*g2*t^4.375)/y - (g1^7*g2^7*t^6.627)/y - (g1*t^7.126)/(g2*g3*y) - (g2*t^7.126)/(g1*g3*y) - (g1^7*g2^5*g3*t^7.126)/y - (g1^5*g2^7*g3*t^7.126)/y + t^7.625/(g1^3*g2^5*g3*y) + t^7.625/(g1^5*g2^3*g3*y) + (g1^3*g2*g3*t^7.625)/y + (g1*g2^3*g3*t^7.625)/y + (g1^8*g2^8*t^8.002)/y + (g1^6*g2^4*t^8.002)/(g3*y) + (g1^4*g2^6*t^8.002)/(g3*y) + (g1^12*g2^10*g3*t^8.002)/y + (g1^10*g2^12*g3*t^8.002)/y + t^8.124/(g1^5*g2^5*y) + (g1^6*g2^2*t^8.501)/y + (3*g1^4*g2^4*t^8.501)/y + (g1^2*g2^6*t^8.501)/y + t^8.501/(g1^2*g2^2*g3^2*y) + (g1^2*t^8.501)/(g3*y) + (g2^2*t^8.501)/(g3*y) + (g1^8*g2^6*g3*t^8.501)/y + (g1^6*g2^8*g3*t^8.501)/y + (g1^10*g2^10*g3^2*t^8.501)/y - (g1^13*g2^13*t^8.879)/y - g1*g2*t^4.375*y - g1^7*g2^7*t^6.627*y - (g1*t^7.126*y)/(g2*g3) - (g2*t^7.126*y)/(g1*g3) - g1^7*g2^5*g3*t^7.126*y - g1^5*g2^7*g3*t^7.126*y + (t^7.625*y)/(g1^3*g2^5*g3) + (t^7.625*y)/(g1^5*g2^3*g3) + g1^3*g2*g3*t^7.625*y + g1*g2^3*g3*t^7.625*y + g1^8*g2^8*t^8.002*y + (g1^6*g2^4*t^8.002*y)/g3 + (g1^4*g2^6*t^8.002*y)/g3 + g1^12*g2^10*g3*t^8.002*y + g1^10*g2^12*g3*t^8.002*y + (t^8.124*y)/(g1^5*g2^5) + g1^6*g2^2*t^8.501*y + 3*g1^4*g2^4*t^8.501*y + g1^2*g2^6*t^8.501*y + (t^8.501*y)/(g1^2*g2^2*g3^2) + (g1^2*t^8.501*y)/g3 + (g2^2*t^8.501*y)/g3 + g1^8*g2^6*g3*t^8.501*y + g1^6*g2^8*g3*t^8.501*y + g1^10*g2^10*g3^2*t^8.501*y - g1^13*g2^13*t^8.879*y


Deformation

Here is the data for the deformed fixed points from the chosen fixed point.

#SuperpotentialCentral Charge $a$ Central Charge $c$ Ratio $a/c$$R$-chargesSuperconformal IndexMore Info.Rational
979 ${}M_{1}q_{1}q_{2}$ + ${ }M_{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{3}q_{1}\tilde{q}_{1}$ + ${ }M_{4}q_{2}\tilde{q}_{2}$ + ${ }M_{5}q_{2}\tilde{q}_{1}$ + ${ }M_{5}\phi_{1}^{2}$ + ${ }M_{6}q_{1}\tilde{q}_{2}$ + ${ }M_{5}M_{7}$ 0.7363 0.9181 0.802 [M:[0.9094, 0.9094, 0.9094, 0.9094, 1.0906, 0.7282, 0.9094], q:[0.6359, 0.4547], qb:[0.4547, 0.6359], phi:[0.4547]] t^2.184 + 6*t^2.728 + 3*t^4.092 + t^4.369 + 4*t^4.636 + 6*t^4.913 + 3*t^5.18 + 17*t^5.456 - 8*t^6. - t^4.364/y - t^4.364*y detail


Equivalent Fixed Points from Other Seed Theories

Here is a list of equivalent fixed points from other gauge theories.

#TheorySuperpotentialCentral Charge $a$ Central Charge $c$ Ratio $a/c$$R$-chargesSuperconformal IndexMore Info.Rational


Equivalent Fixed Points from the Same Seed Theory

Below is a list of equivalent fixed points from the same seed theories.

id Theory Superpotential Central Charge $a$ Central Charge $c$ Ratio $a/c$ $R$-charges More Info. Rational


Previous Theory

The previous fixed point before deforming to get the chosen fixed point.

#TheorySuperpotentialCentral Charge $a$ Central Charge $c$ Ratio $a/c$$R$-chargesSuperconformal IndexMore Info.Rational
372 SU2adj1nf2 ${}M_{1}q_{1}q_{2}$ + ${ }M_{2}\tilde{q}_{1}\tilde{q}_{2}$ + ${ }M_{3}q_{1}\tilde{q}_{1}$ + ${ }M_{4}q_{2}\tilde{q}_{2}$ + ${ }M_{5}q_{2}\tilde{q}_{1}$ + ${ }M_{5}\phi_{1}^{2}$ 0.7103 0.8687 0.8177 [M:[0.9326, 0.9326, 0.9326, 0.9326, 1.0674], q:[0.6011, 0.4663], qb:[0.4663, 0.6011], phi:[0.4663]] 5*t^2.798 + t^3.202 + t^3.606 + 3*t^4.197 + 4*t^4.601 + 3*t^5.005 + 11*t^5.596 - 3*t^6. - t^4.399/y - t^4.399*y detail