Landscape




$a$ =

$c$ =

$\leq a \leq$

$\leq c \leq$

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
56187 SU2adj1nf2 $M_1q_1q_2$ + $ M_2q_1\tilde{q}_1$ + $ M_3q_1\tilde{q}_2$ + $ M_4q_2\tilde{q}_2$ + $ M_1M_3$ + $ \phi_1\tilde{q}_2^2$ + $ M_5\phi_1q_1q_2$ + $ M_4^2$ + $ M_6\tilde{q}_1\tilde{q}_2$ + $ M_1M_7$ 0.6489 0.8546 0.7592 [X:[], M:[1.2585, 0.9323, 0.7415, 1.0, 0.7754, 0.6739, 0.7415], q:[0.5, 0.2415], qb:[0.5677, 0.7585], phi:[0.4831]] [X:[], M:[[1], [-8], [-1], [0], [3], [-9], [-1]], q:[[0], [-1]], qb:[[8], [1]], phi:[[-2]]] 1
Relevant OperatorsMarginal Operators$n_{marginal}$$-$$|F_{IR}|$Superconformal IndexRefined index
$M_6$, $ M_3$, $ M_7$, $ M_5$, $ q_2\tilde{q}_1$, $ M_2$, $ \phi_1^2$, $ \phi_1q_2^2$, $ M_4$, $ \phi_1q_2\tilde{q}_1$, $ M_6^2$, $ M_3M_6$, $ M_6M_7$, $ M_5M_6$, $ M_3^2$, $ M_3M_7$, $ M_7^2$, $ \phi_1q_1^2$, $ M_6q_2\tilde{q}_1$, $ \phi_1q_2\tilde{q}_2$, $ M_3M_5$, $ M_5M_7$, $ M_5^2$, $ \phi_1q_1\tilde{q}_1$, $ M_3q_2\tilde{q}_1$, $ M_7q_2\tilde{q}_1$, $ M_5q_2\tilde{q}_1$, $ M_2M_6$, $ \phi_1\tilde{q}_1^2$, $ q_2^2\tilde{q}_1^2$, $ M_6\phi_1^2$, $ M_6\phi_1q_2^2$, $ M_2M_3$, $ M_4M_6$, $ M_2M_7$, $ M_2M_5$, $ M_3\phi_1^2$, $ M_7\phi_1^2$, $ M_3\phi_1q_2^2$, $ M_7\phi_1q_2^2$, $ M_3M_4$, $ M_4M_7$, $ M_5\phi_1^2$, $ M_5\phi_1q_2^2$, $ M_2q_2\tilde{q}_1$, $ \phi_1q_1\tilde{q}_2$, $ M_4M_5$, $ \phi_1^2q_2\tilde{q}_1$, $ \phi_1q_2^3\tilde{q}_1$, $ M_4q_2\tilde{q}_1$, $ \phi_1\tilde{q}_1\tilde{q}_2$, $ M_2^2$, $ M_2\phi_1^2$, $ M_2\phi_1q_2^2$, $ M_2M_4$, $ \phi_1^4$, $ \phi_1^3q_2^2$, $ \phi_1^2q_2^4$, $ M_4\phi_1^2$, $ M_4\phi_1q_2^2$, $ M_6\phi_1q_2\tilde{q}_1$ . -3 t^2.02 + 2*t^2.22 + t^2.33 + t^2.43 + t^2.8 + 2*t^2.9 + t^3. + t^3.88 + t^4.04 + 2*t^4.25 + t^4.35 + 5*t^4.45 + 2*t^4.55 + 4*t^4.65 + t^4.75 + t^4.82 + 2*t^4.86 + 2*t^4.92 + 2*t^5.02 + 5*t^5.12 + 4*t^5.22 + 3*t^5.33 + t^5.43 + t^5.59 + 2*t^5.7 + 3*t^5.8 + 2*t^5.9 - 3*t^6. + t^6.06 + t^6.1 - t^6.2 + 2*t^6.27 + t^6.3 + t^6.37 + 4*t^6.47 + t^6.57 + 8*t^6.67 + 4*t^6.78 + t^6.84 + 8*t^6.88 + 2*t^6.94 + 2*t^6.98 + 2*t^7.04 + 5*t^7.08 + 5*t^7.14 + 2*t^7.18 + 5*t^7.25 + 2*t^7.28 + 11*t^7.35 + 7*t^7.45 + 6*t^7.55 + t^7.62 + 4*t^7.65 + 2*t^7.72 + 4*t^7.75 + 4*t^7.82 + t^7.86 + 5*t^7.92 - t^7.96 + 4*t^8.02 + t^8.09 + 6*t^8.12 - 5*t^8.22 + 2*t^8.29 - t^8.33 + 2*t^8.39 - 8*t^8.43 + 6*t^8.49 - t^8.53 + 5*t^8.59 - 2*t^8.63 + 10*t^8.7 + 2*t^8.73 + t^8.86 + 4*t^8.9 + 2*t^8.96 - t^4.45/y - t^6.47/y - t^6.67/y - t^6.78/y + t^7.25/y + (2*t^7.45)/y + (3*t^7.55)/y + (3*t^7.65)/y + t^7.75/y + t^7.82/y + (2*t^7.92)/y + (3*t^8.02)/y + (6*t^8.12)/y + (6*t^8.22)/y + (3*t^8.33)/y + (2*t^8.43)/y - t^8.49/y + t^8.7/y + t^8.8/y + (2*t^8.9)/y - t^4.45*y - t^6.47*y - t^6.67*y - t^6.78*y + t^7.25*y + 2*t^7.45*y + 3*t^7.55*y + 3*t^7.65*y + t^7.75*y + t^7.82*y + 2*t^7.92*y + 3*t^8.02*y + 6*t^8.12*y + 6*t^8.22*y + 3*t^8.33*y + 2*t^8.43*y - t^8.49*y + t^8.7*y + t^8.8*y + 2*t^8.9*y t^2.02/g1^9 + (2*t^2.22)/g1 + g1^3*t^2.33 + g1^7*t^2.43 + t^2.8/g1^8 + (2*t^2.9)/g1^4 + t^3. + g1^5*t^3.88 + t^4.04/g1^18 + (2*t^4.25)/g1^10 + t^4.35/g1^6 + (5*t^4.45)/g1^2 + 2*g1^2*t^4.55 + 4*g1^6*t^4.65 + g1^10*t^4.75 + t^4.82/g1^17 + 2*g1^14*t^4.86 + (2*t^4.92)/g1^13 + (2*t^5.02)/g1^9 + (5*t^5.12)/g1^5 + (4*t^5.22)/g1 + 3*g1^3*t^5.33 + g1^7*t^5.43 + t^5.59/g1^16 + (2*t^5.7)/g1^12 + (3*t^5.8)/g1^8 + (2*t^5.9)/g1^4 - 3*t^6. + t^6.06/g1^27 + g1^4*t^6.1 - g1^8*t^6.2 + (2*t^6.27)/g1^19 + g1^12*t^6.3 + t^6.37/g1^15 + (4*t^6.47)/g1^11 + t^6.57/g1^7 + (8*t^6.67)/g1^3 + 4*g1*t^6.78 + t^6.84/g1^26 + 8*g1^5*t^6.88 + (2*t^6.94)/g1^22 + 2*g1^9*t^6.98 + (2*t^7.04)/g1^18 + 5*g1^13*t^7.08 + (5*t^7.14)/g1^14 + 2*g1^17*t^7.18 + (5*t^7.25)/g1^10 + 2*g1^21*t^7.28 + (11*t^7.35)/g1^6 + (7*t^7.45)/g1^2 + 6*g1^2*t^7.55 + t^7.62/g1^25 + 4*g1^6*t^7.65 + (2*t^7.72)/g1^21 + 4*g1^10*t^7.75 + (4*t^7.82)/g1^17 + g1^14*t^7.86 + (5*t^7.92)/g1^13 - g1^18*t^7.96 + (4*t^8.02)/g1^9 + t^8.09/g1^36 + (6*t^8.12)/g1^5 - (5*t^8.22)/g1 + (2*t^8.29)/g1^28 - g1^3*t^8.33 + (2*t^8.39)/g1^24 - 8*g1^7*t^8.43 + (6*t^8.49)/g1^20 - g1^11*t^8.53 + (5*t^8.59)/g1^16 - 2*g1^15*t^8.63 + (10*t^8.7)/g1^12 + 2*g1^19*t^8.73 + t^8.86/g1^35 + (4*t^8.9)/g1^4 + (2*t^8.96)/g1^31 - t^4.45/(g1^2*y) - t^6.47/(g1^11*y) - t^6.67/(g1^3*y) - (g1*t^6.78)/y + t^7.25/(g1^10*y) + (2*t^7.45)/(g1^2*y) + (3*g1^2*t^7.55)/y + (3*g1^6*t^7.65)/y + (g1^10*t^7.75)/y + t^7.82/(g1^17*y) + (2*t^7.92)/(g1^13*y) + (3*t^8.02)/(g1^9*y) + (6*t^8.12)/(g1^5*y) + (6*t^8.22)/(g1*y) + (3*g1^3*t^8.33)/y + (2*g1^7*t^8.43)/y - t^8.49/(g1^20*y) + t^8.7/(g1^12*y) + t^8.8/(g1^8*y) + (2*t^8.9)/(g1^4*y) - (t^4.45*y)/g1^2 - (t^6.47*y)/g1^11 - (t^6.67*y)/g1^3 - g1*t^6.78*y + (t^7.25*y)/g1^10 + (2*t^7.45*y)/g1^2 + 3*g1^2*t^7.55*y + 3*g1^6*t^7.65*y + g1^10*t^7.75*y + (t^7.82*y)/g1^17 + (2*t^7.92*y)/g1^13 + (3*t^8.02*y)/g1^9 + (6*t^8.12*y)/g1^5 + (6*t^8.22*y)/g1 + 3*g1^3*t^8.33*y + 2*g1^7*t^8.43*y - (t^8.49*y)/g1^20 + (t^8.7*y)/g1^12 + (t^8.8*y)/g1^8 + (2*t^8.9*y)/g1^4


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


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
50983 SU2adj1nf2 $M_1q_1q_2$ + $ M_2q_1\tilde{q}_1$ + $ M_3q_1\tilde{q}_2$ + $ M_4q_2\tilde{q}_2$ + $ M_1M_3$ + $ \phi_1\tilde{q}_2^2$ + $ M_5\phi_1q_1q_2$ + $ M_4^2$ + $ M_6\tilde{q}_1\tilde{q}_2$ 0.6295 0.819 0.7686 [X:[], M:[1.2582, 0.9342, 0.7418, 1.0, 0.7747, 0.676], q:[0.5, 0.2418], qb:[0.5658, 0.7582], phi:[0.4835]] t^2.03 + t^2.23 + t^2.32 + t^2.42 + t^2.8 + 2*t^2.9 + t^3. + t^3.77 + t^3.87 + t^4.06 + t^4.25 + t^4.35 + 3*t^4.45 + t^4.55 + 3*t^4.65 + t^4.75 + t^4.83 + 2*t^4.85 + 2*t^4.93 + t^5.03 + 3*t^5.13 + 3*t^5.23 + 3*t^5.32 + t^5.42 + t^5.61 + 2*t^5.7 + 4*t^5.8 + 2*t^5.9 - 2*t^6. - t^4.45/y - t^4.45*y detail