We extend some aspects of vacuum string field theory to superstring field theory in Berkovits’ formulation, and we study the star algebra in the fermionic matter sector. After clarifying the structure of the interaction vertex in the operator formalism of Gross and Jevicki, we provide an algebraic construction of the supersliver state in terms of infinite–dimensional matrices. This state is an idempotent string field and solves the matter part of the equation of motion of superstring field theory with a pure ghost BRST operator. We determine the spectrum of eigenvalues and eigenvectors of the infinite–dimensional matrices of Neumann coefficients in the fermionic matter sector. We then analyze coherent states based on the supersliver and use them in order to construct higher–rank projector solutions, as well as to construct closed subalgebras of the star algebra in the fermionic matter sector. Finally, we show that the geometric supersliver is a solution to the superstring field theory equations of motion, including the (super)ghost sector, with the canonical choice of vacuum BRST operator recently proposed by Gaiotto, Rastelli, Sen and Zwiebach.

1.
E.
Witten
,
Nucl. Phys. B
268
,
253
(
1986
).
2.
V. A.
Kostelecky
and
S.
Samuel
,
Nucl. Phys. B
336
,
263
(
1990
).
3.
A.
Sen
,
JHEP
9808
,
012
(
1998
).
4.
A.
Sen
,
Int. J. Mod. Phys. A
14
,
4061
(
1999
).
5.
A.
Sen
,
JHEP
9912
,
027
(
1999
).
6.
A.
Sen
, “
Non-BPS states and branes in string theory
,” hep-th/9904207.
7.
K.
Ohmori
, “
A review on tachyon condensation in open string field theories
,” hep-th/0102085.
8.
N.
Berkovits
,
Nucl. Phys. B
450
,
90
(
1995
).
9.
N.
Berkovits
,
Fortschr. Phys.
48
,
31
(
2000
).
10.
N.
Berkovits
, “
Review of open superstring field theory
,” hep-th/0105230.
11.
N.
Berkovits
and
C. T.
Echevarria
,
Phys. Lett. B
478
,
343
(
2000
) [
N.
Berkovits
and
C. T.
Echevarria
, hep-th/9912120].
12.
N.
Berkovits
,
JHEP
0004
,
022
(
2000
).
13.
N.
Berkovits
,
A.
Sen
, and
B.
Zwiebach
,
Nucl. Phys. B
587
,
147
(
2000
).
14.
P. J.
De Smet
and
J.
Raeymaekers
,
JHEP
0005
,
051
(
2000
).
15.
A.
Iqbal
and
A.
Naqvi
, “
Tachyon condensation on a Non-BPS D-brane
,” hep-th/0004015.
16.
K.
Ohmori
,
JHEP
0105
,
035
(
2001
).
17.
P. J.
De Smet
, “
Tachyon condensation: Calculations in string field theory
,” hep-th/0109182.
18.
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
, “
String field theory around the tachyon vacuum
,” hep-th/0012251.
19.
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
, “
Classical solutions in string field theory around the tachyon vacuum
,” hep-th/0102112.
20.
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
,
JHEP
0111
,
035
(
2001
).
21.
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
,
JHEP
0111
,
045
(
2001
).
22.
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
, “
Vacuum string field theory
,” hep-th/0106010.
23.
L.
Rastelli
and
B.
Zwiebach
,
JHEP
0109
,
038
(
2001
).
24.
V. A.
Kostelecky
and
R.
Potting
,
Phys. Rev. D
63
,
046007
(
2001
).
25.
D.
Gaiotto
,
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
, “
Ghost structure and closed strings in vacuum string field theory
,” hep-th/0111129.
26.
L.
Rastelli
,
A.
Sen
, and
B.
Zwiebach
, “
Star algebra spectroscopy
,” hep-th/0111281.
27.
D. J.
Gross
and
W.
Taylor
,
JHEP
0108
,
009
(
2001
).
28.
D. J.
Gross
and
W.
Taylor
,
JHEP
0108
,
010
(
2001
).
29.
D. J.
Gross
and
A.
Jevicki
,
Nucl. Phys. B
293
,
29
(
1987
).
30.
D. J.
Gross
and
A.
Jevicki
,
Nucl. Phys. B
283
,
1
(
1987
).
31.
D. J.
Gross
and
A.
Jevicki
,
Nucl. Phys. B
287
,
225
(
1987
).
32.
D.
Friedan
,
E.
Martinec
, and
S.
Shenker
,
Nucl. Phys. B
271
,
93
(
1986
).
33.
J.
Kluson
,
JHEP
0106
,
045
(
2001
).
34.
A. M.
Polyakov
and
P. B.
Wiegmann
,
Phys. Lett. B
141
,
223
(
1984
).
35.
J.
Kluson
,
JHEP
0107
,
039
(
2001
).
36.
A.
LeClair
,
M. E.
Peskin
, and
C. R.
Preitschopf
,
Nucl. Phys. B
317
,
411
(
1989
).
37.
A.
LeClair
,
M. E.
Peskin
, and
C. R.
Preitschopf
,
Nucl. Phys. B
317
,
464
(
1989
).
38.
A.
LeClair
,
Nucl. Phys. B
303
,
189
(
1988
).
39.
H.
Hata
and
S.
Moriyama
, “
Observables as twist anomaly in vacuum string field theory
,” hep-th/0111034.
40.
G.
Moore
and
W.
Taylor
, “
The singular geometry of the sliver
,” hep-th/0111069.
41.
E.
Witten
,
Nucl. Phys. B
276
,
291
(
1986
).
42.
S.
Samuel
,
Nucl. Phys. B
296
,
187
(
1988
).
43.
A. R. Bogojević, A. Jevicki, and G.-W. Meng, “Quartic interaction in superstring field theory,” Preprint BROWN-HET-672 (unpublished).
44.
H.
Hata
and
T.
Kawano
,
JHEP
0111
,
038
(
2001
).
45.
J.
David
,
JHEP
0107
,
024
(
2001
).
46.
P.
Mukhopadhyay
, “
Oscillator representation of the BCFT construction of D-branes in vacuum string field theory
,” hep-th/0110136.
47.
J.
Bordes
,
H.
Chan
,
L.
Nellen
, and
S. T.
Tsou
,
Nucl. Phys. B
351
,
441
(
1991
).
48.
I. Y.
Aref’eva
,
D. M.
Belov
,
A. A.
Giryavets
,
A. S.
Koshelev
, and
P. B.
Medvedev
, “
Noncommutative field theories and (super)string field theories
,” hep-th/0111208.
49.
I. Y.
Aref’eva
,
A. A.
Giryavets
, and
P. B.
Medvedev
, “
NS matter sliver
,” hep-th/0112214.
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